WPCV Fg6àgU ^H&6ˮHgUC`6x7kW4gZXԩ)z*7a+!W<?^3 X(ܣQcdid:~ddhd edyYd2fafad1&fa@ o{@ yo{@ o{wdd6@ o{@ o{@ o{@ o{@ o{!d6@ o{EWd@ o{dW'@ ~o{ D336i@ o{@ dxo{@ 'o{1@ o{d1dxPdnd5 @dy\ AK ddy!dy=di%=db%d!d5di"Ld6"d67Emdd$d\d\ 0JU:LfafadXf&a(L< A% 0K AM6U:dX@1U :q@ o{0d5Dyd5UN@ o{-@ o{@ Go{Q@U : @ F o{P UN d5-@ bo{lTd0;kdx@ 3%o{X@ o{XU:4@ no{xdzdxC dEP "fT#7V#d#7Y$d$J\%d%q&<K)dx)a)d*-d.12d23dF3UN4fd4ff4ah4a|4f4a4f4a4@ 4o{4@ A5U:K5f5a5f5 5d5!E6df6a6f77f7a777dx8dU~88!8d 99d9!::d[::d;!;d;MT<d<C>dw`> >d>?dx?@d3@@d@!aAdA!Bd`d[`o{`^a:gdhWgU:g@ g$hd'h$hdh}idWiid5j8jdWSjjd5jjdhkJxkdkCmd5Wmmdmo{2nUNn@ no{o@ oo{o@ po{ppU:fv@ vo{vUN%w@ swo{}w@ wo{x@ }xo{x3yU:5foaqfafaLU:UN7@ ;o EUNU:B@ |o{@ o{ @ o{@ o{UN7U:@ o{ɘ@ Do{N@ əo{ә@ No{XӚUNU:@ o{)@ o{@ )o{3@ o{3UNU:E@ o{@ o{@ o{@ o{U:e@ o{UN$@ ro{|@ o{@ |o{U:ӵ@ o{UN@ o{@ eo{o@ o{oU:U@ o{U N@ bo{l@ o{@ lo{vbU:S@ o{UN@ `o{j@ o{@ jo{t@U :/@ io{sUN@ <o{F@ o{@ Fo{P@U : @ Eo{OUN@ o{"@ o{@ "o{,U:@ o{UNB@ o{@ o{@ o{U:@ 5o{?UN@ o{@ o{@ o{U:s@ o{UN2@ o{@ o{@ o{U:@ %o{/UN@ o{@ }o{@ o{ 3U:faf a f a"L6U:UN @ o UNyU:@ o{ @ o{@ o{@ o{UNU: @ Do{N@ o{@ No{X@ o{XUN#U:j#@ #o{#@ )$o{3$@ $o{$@ 3%o{=%%UN|*U:*@ +o{+@ +o{+@ ,o{,@ ,o{,-U:1@ $2o{.2UN2@ 2o{3@ |3o{3@ 4o{ 44U:X9@ 9o{9UN:@ e:o{o:@ :o{:@ o;o{y;;U:B@ Co{CU NC@ Co{C@ lDo{vD@ Do{DbvEU:K@ Lo{LUNL@ Lo{L@ jMo{tM@ Mo{M@tNU :S@ So{SUNsT@ To{T@ FUo{PU@ Uo{U@PVU :[@ [o{[UNO\@ \o{\@ "]o{,]@ ]o{],^U:d@ Bdo{LdUNd@ eo{e@ eo{e@ fo{)ffU:l@ lo{lUN?m@ mo{m@ no{n@ no{noU:t@ 2uo{#XX _Ԁ_Checks# # _Ԁp`\ j~2 ppK@@@ ) H4KEH pp# ##X4X _#  TABLE D <theta_{MAX}  ~~theta_{MIN}~<=~2WPCKt-513+ )%. %%l% '*,cMMr.MAXcXcMM.MINcxc2c xSTACKALIGN{  LEFT|~alpha_{2}~RIGHT|&~<=~2#\&\#LEFT|~beta_{2}~RIGHT|&~<=~2}WPCK-513+ )%. %%% WPCK-513+ )%. %%%  WPCKt-513+ )%. %%l%  d)  _  XX "p`\ j~2 ppK@@@ ) H4KE ppeProbeChecks$p`\ j~2 ppK@@@ ) 4KE ppy @7  4  ڈT.&p`\ j~2 ppK@@@ ) 4KE ppeProbeChecks(p`\ j~2 ppK@@@ ) H4KEv pp+# M##X4X .# # WPCKt-513+ )%. %%l%% WPCK-513+ )%. %%%' WPCK-513+ )%. %%%) WPCKt-513+ )%. %%l%Arial Bold368E` E ` P  t2N2"  E E  PN  $2NNN2"N a~<=~x~<=~bXXGaXXGXXGxXXSGXX#Gb LEFT|~x~RIGHT|X X/ XXGx +LEFT|~x~RIGHT|  ~<=~aX X/ XXGxXXGXXmGa %a~<=~  Ѐx~<=~aXXGXXGaXXKGXXGxXXGXXGa .LEFT|~RC~RIGHT|  ~<=~3%X XO XXGRXXGXXqGCXXGXXG3XXG% 3%~<=~RC~<=~3%XXGXXG3XXG%XXGXXGRXX;GXXGCXXGXXaG3XXG% "R_{ADO}^{pre}  '*,cRMMpreMM3ADO lLEFT|~Z~RIGHT|~<=~\max~\of~LEFT\{STACK{~0.03~\in.~H_{2}O#\or#~1~minor~scale~division}RIGHT\} L~~D~>=~3~feetBDf f SZmaxofggghgQg:ggggkgTg!$h$Q$:$"$$k$T$#u0u.9u03uineu.uH  !J2OuOor.1C.minor.scale.divisionTABLE E U{LEFT|`  T_{G}T_{R}`RIGHT|}OVER{T_{R}}~TIMES~100%~<=~1.5%'*, $6( :( PwTMMBGwrwTMMBRcTMMJ.R'N100h%G1R.5%@?TABLE CXXGLXXGXXGDXXGXXgG3XX#Gfeet 0LEFT|~Z~RIGHT|~<=~LEFT(~5%~TIMES~ADP~RIGHT) )LEFT|~R_{ADO}^{pre}~RIGHT|~<=~1'*,ecRMMpreMM3ADOpcc1{cBDf f S/Z/fefl/5C/%/'s/ADP xSTACKALIGN{  LEFT|~alpha_{1}~RIGHT|&~<=~2#\&\#LEFT|~beta_{1}~RIGHT|&~<=~2}368E` E ` P  t1N2"  E E  PN  $1NNN2"N R_{ADO}^{post}'*,cRMMpostMM3ADOTABLE FBDT T OR  307C  30maxof===h=Q=:====k=T= ! $ h$ Q$ :$ " $ $ k$ T$ #u2u%u'uULtorO0O.O02Oin!O.}OH  $2 <LEFT|~R_{ADO}^{post}~~R_{ADO}^{pre}~RIGHT|~<=~2'*,||ecRMMpostMM3ADOccRMM[preMMA3ADOcc2c LEFT|~R_{60}~~C_{60}~RIGHT|BDT T OPR  %607PPC  %60 LEFT|~R_{90}~~C_{90}~RIGHT|BDT T OPR  %907PPC  %90 _LEFT(`50%~TIMES~UL`RIGHT)  ~<=~̀R~<=~LEFT(`90%~TIMES~UL`RIGHT)BDfefl9/50/%k/'/UL//R/fef=l/90U/%/'/UL |LEFT|~R~~C~RIGHT|~<=~\max~\of~LEFT\{  STACK{3%~TIMES~UL#\or#~0.03~\in.~H_{2}O~}RIGHT\}BDf f SRiCEmaxofhQ:kT!$h$Q$:$"$$k$T$#Ju3u%8u'uULorO0/O.QO03Oin}O.OH  9$2gOO LLEFT|  ~180~~R_{1}~~R_{2}~~theta~RIGHT|~<=~2JMO _ he180deeeRMM/1e2eRMM/2eeefe2e 4LEFT|  ~alpha~RIGHT|~<=~2JMO   h;c;;2d; 0LEFT|  ~R~RIGHT|~<=~2JMO  h;Rq;;2r; C_{p}^{HIGH2`(A)}='*,cCMMHIGH2MM (MM0AMMz)MM3pc D{LEFT(~  E_{W}~~E_{S}~RIGHT)}OVER{A}~=~1,000JMO\"4f4mGEMMWGMGEMMS;A[1,000 15~<=~P~<=~15'*,:x:154::n:P'::15:(3$ !    '  _  XX fp`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁhp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.jp`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁlp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# g WPCKt-513+ )%. %%l%i WPCK-513+ )%. %%%k WPCK-513+ )%. %%%m WPCKt-513+ )%. %%l%(3$ !   PLEFT|~  alpha_{PLATE}~~alpha_{INSP}~RIGHT|~<=~2 dX Xo XXyx7PLATEXXxXXx7INSPXXxXXx2XX x'dxd C_{p}^{LOW``1`(A)}='*,cCMMLOWMM1MM (MM0AMMz)MM3pc  6 d)  _ X XXXXX yp`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.p`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#X X#XX # h# ԀChecks# # #X X\#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# ##X4X )#  TABLE H  d)  _  XX }p`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.p`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# ~ WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% hLEFT|``  theta_{y}`RIGHT|~<=~3~~~\and~~~LEFT|``theta_{p}`RIGHT|~<=~3 P\min~\of~LEFT\{STACK{Length(L)#~\or~#~Width(W)}RIGHT\}~>=~12~inchesLevel 1Level 2Level 3Level 4Level 5BDminofhQ:kT!!!$!h$!Q$!:$!"!$!$!k$!T$!#UL;UengthiU(ULU)or/WidthY/(/W/)12inches CLEFT(  {P}OVER{A}RIGHT)~TIMES~100%~<=~4%BDhjioqp+aoPo/AX'100%T4"%'*,  @cMM.y>cc3Icicand_ 9 cMM.pc<c3cWPCKt-513+ )%. %%l% WPCK-513+ )%. %%%  C_{p}^{LOW2`(A)}='*,cCMMLOW2MM(MMAMMb)MM3pcWPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppe#X XM#XX # .# WallEffects(Method2H)#X X3#XX # u# ԀChecks# ##X4X #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.p`\ j~2 ppK@@@ ) t4KE ppeF߀#X X#XX # }# WallEffects(Method2H)#X Xf#XX # # ԀChecks# D##X4X #X XXX4XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X #  WPCKt-513+ )%. %%l% WPCK-513+ )%. %%%  d  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ# nM -, dcd WPCKt-513+ )%. %%l%1Large Dashed ds&Draw Object <<=8C HKKKK  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ#  WPCKt-513+ )%. %%l%  WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%%WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% tIP~>=~\min~\of~LEFT\{  STACK{~3~\in.~H_{2}O#\or#~Approximately~75%~TIMES~UL}RIGHT\}4TABLE GBDIPQminUofhQ:kT ! $ h$ Q$ :$ " $ $ k$ T$ #u3uinu.^uH  J2uOorW. Approximately.755.%.'e.UL ?LEFT|~FP~~IP~RIGHT|  ~<=~0.10~\in.~H_{2}OJMO= = heFP}e*eIPkee0le.e10ein e.|eHMM/2.eO T~>=~15~secondsJMO;T;g;15X;seconds lLEFT|~Z~RIGHT|~<=~\max~\of~LEFT\{STACK{~0.03~\in.~H_{2}O#\or#~1~minor~scale~division}RIGHT\}BDf f SZmaxofggghgQg:ggggkgTg!$h$Q$:$"$$k$T$#u0u.9u03uineu.uH  !J2OuOor.1C.minor.scale.division Cbar_{p}^{LOW(A)}'*,=cCMMLOWMM(MMAMM)MM.p WPCK-513+ )%. %%% :LEFT|~Z~RIGHT|~<=~LEFT(~5%~TIMES~DELTAP_{AVG}~RIGHT)BDf0 f0 SPZPTfTmP5;P%P'kPPP  %AVG WPCKt-513+ )%. %%l% X d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeWallEffects(Method2H)#X XM#XX # .# ԀChecks#X XK##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.p`\ j~2 ppK@@@ ) t4KE ppeF߀#X X#XX # # WallEffects(Method2H)#X X#XX # $# ԀChecks# ##X4X ~#X XXX4XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ,##X4X K#  WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% 6 '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.p`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#X X#XX # h# ԀChecks# # #X X\#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# ##X4X )#  WPCKt-513+ )%. %%l% WPCKt-513+ )%. %%l%n C<<CLevel 1Level 2Level 3Level 4Level 5 WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%%n[Inline Te&xt" <<C($$   1    '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X #  WPCKt-513+ )%. %%l%(3$ !   3LEFT|`(col.~iii)~~(col.~vi)RIGHT|~>~1/2~inch 4LEFT|`(col.~iv)~~(col.~vi)RIGHT|~<=~0.25~inch'*,  2:(j:colB:.:iv3:):a:(:colq:.:vib:)::0:.-:252:inchTABLE KTABLE J'*,  2:(j:colB:.:iii+:):Y:(:coli:.:viZ:):>:1:/#:2:inch  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X #   d)  _ X XXXXX  p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # TABLE F WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% mLEFT|  {DELTAP_{STD}~~DELTAP_{CAL}}OVER{DELTAP_{STD}}~TIMES~100%RIGHT|̀~<=~2%'*,Q```Q``^+=wwPMMBSTDDwwawPMMBCALccPMMt.STD'100%g2% F_{2}^{max}'*,cFMMmaxMMz32 WPCKt-513+ )%. %%l% F_{2}^{min}  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X #  WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%'*,cFMMminMMz32 WPCK-513+ )%. %%% ;{F_{2}^{max}~~F_{2}^{min}}OVER{F_{2}^{min}}~TIMES~100%'*,f$K6FMMmaxMMy2FMMminMMy2[cFMMminMM32#'#100#% WPCK-513+ )%. %%% P~<`15'*,:P:<A::15a:  WPCKt-513+ )%. %%l%pppp'dxd ) "  _?X XXX*@pAddd Xdd Xdd X{*{*,**dd +  /  /? +)! X?XObserversNotes#?X X!? +),# C9&dd"    C6,***"     6*eBpCdd**dd **@pA{*{*e, dd ,(HH +  + nn +ID =,!" =Notes C9&"   C 9/!LL 9 C9&LL   C 9/!   9 C9&     C 9/!  96,*     6*xFpGdd dd (HH (BpC{*{*x,Idd +  !   !dH0 ` << ` E f@Z@Z f@Zd(ff   (#XCX X?X+# Cbar_{p}^{HIGH(A)} WPCKt-513+ )%. %%l% '*,=cCMMHIGHMM(MMAMM0)MM.p Cbar_{p}^{HIGH(A)}=WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%'*,=cCMMHIGHMM(MMAMM0)MM.pVc Cbar_{p}^{HIGH(B)}'*,=cCMMHIGHMM(MMBMM0)MM.p Cbar_{p}^{HIGH(B)}='*,=cCMMHIGHMM(MMBMM0)MM.pVc Cbar_{p}'*,=cCMM.p C_{p}^{HIGH3`(A)}='*,cCMMHIGH3MM (MM0AMMz)MM3pc!n>A<<BLevel 1Level 2Level 3Level 4Level 5 C_{p}^{HIGH``1`(B)}='*,cCMMHIGHMM1MM"(MMHBMM)MM3pc C_{p}^{HIGH2`(B)}='*,cCMMHIGH2MM (MM0BMMz)MM3pc C_{p}^{HIGH3`(B)}='*,cCMMHIGH3MM (MM0BMMz)MM3pc sigma_{HIGH}^{(A)}~='*,c%MM|(MMAMM)MM|3HIGHc sigma_{HIGH}^{(A)}~<=~0.01'*,c%MM|(MMAMM)MM|3HIGHcc0c.c01 sigma_{HIGH}^{(B)}~<=~0.01'*,c%MM|(MMBMM)MM|3HIGHcc0c.c01 Cbar_{p}'*,=cCMM.p sigma_{HIGH}^{(B)}~='*,c%MM|(MMBMM)MM|3HIGHc BLEFT|Cbar_{p}^{HIGH(A)}~~Cbar_{p}^{HIGH(B)}RIGHT|~<=~0.01 F_{2}^{max}'*,cFMMmaxMMz32 F_{2}^{min}'*,cFMMminMMz32 ;{F_{2}^{max}~~F_{2}^{min}}OVER{F_{2}^{min}}~TIMES~100%'*,f$K6FMMmaxMMy2FMMminMMy2[cFMMminMM32#'#100#%'*,EcCMMHIGHMM(MMAMM8)MM.pc}TcCMMHIGHMM(MM&BMMp)MM.pcc0c.%c01 %DIFF~=~{LEFT|`Cbar_{p}^{HIGH(A)}~~Cbar_{p}^{LOW(A)}`RIGHT|}  OVER{Cbar_{p}^{LOW(A)}}~TIMES~100%̀~<=~3%'*,*%*DIFFl*$R6a6aaayPCMMHIGHMM(MM"AMMl)MM{pCMMLOWMM(MMBAMM)MM{pcCMMLOWMM(MMAMM)MMi.p- *' *100 *% *~ *3 *% %DIFF~=~{LEFT|`Cbar_{p}^{HIGH(B)}~~Cbar_{p}^{LOW(B)}`RIGHT|}  OVER{Cbar_{p}^{LOW(B)}}~TIMES~100%̀~<=~3%'*,*%*DIFFl*$R6a6aaayPCMMHIGHMM(MM"BMMl)MM{pCMMLOWMM(MMBBMM)MM{pcCMMLOWMM(MMBMM)MMi.p- *' *100 *% *~ *3 *%(P$ Table  1  ,SAZ"Arial RegularpTABLE NH9TABLE M sigma_{HIGH}^{(A)}XXx%(A)CHIGH2TABLE I B_MX XXXM XMXPreparedby   #MX XM/#U.S.EnvironmentalProtectionAgency  CleanAirMarketsDivision,6204J401MStreet,SWWashington,D.C.20460 #XCX XMX#JnKs I&mage <=8C HKKKKLevel 1Level 2Level 3Level 4Level 5( $ Figure  1  JnK A<< C,SAZ"Arial Regular sigma_{HIGH}^{(B)}XXx%(B)CHIGH 6 '  _ QX XXXQXX Rp`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#QX XM##XX4XXX .#QX XXX4QXX ԀYp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.\p`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#QX X#QXX #X h#Q ԀChecks#X #Q #QX X\#QXX Ԁ^p`\ j~2 ppK@@@ ) H4KE pp;#X ##XX4X )# ,SAZ"Arial RegularS WPCKt-513+ )%. %%l% Cbar_{p}'*,=cCMM.p Cbar_{p}'*,=cCMM.p(9 Z6Times New Roman RegularZ WPCK-513+ )%. %%% # U     ] WPCK-513+ )%. %%%_ WPCKt-513+ )%. %%l% 6 d)  _ aX XXXaXX bp`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#aX XM##dX4XXX .#aX XXX4aXX Ԁgp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.np`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#aX X#aXX #d h#a ԀChecks#d #a #aX X\#aXX Ԁqp`\ j~2 ppK@@@ ) H4KE pp;#d ##dX4X )# ,SAZ"Arial Regularc WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular Cbar_{p}'*,=cCMM.ph WPCK-513+ )%. %%% JLEFT|~DELTAP_{STD}~~DELTAP_{CAL}~RIGHT|~<=~0.01~\in.~H_{2}O'*,  eccPMME.STDlcccPMM.CALpcc0{c.c01cin2c.cHMM# .2a cO C_{p}^{LOW3`(A)}='*,cCMMLOW3MM(MMAMMb)MM3pc C_{p}^{LOW``1`(B)}=p  ) "  _XS XXX*pddd Xdd Xdd X{*{*,**dd +  /  / ! XXSObserversNotes#XS X! ,# C9&dd"    C6,***"     6*epdd**dd **p{*{*e, dd ,(HH +  + nn +ID =,!" =Notes C9&"   C 9/!LL 9 C9&LL   C 9/!   9 C9&     C 9/!  96,*     6*xpdd dd (HH (p{*{*x,Idd +  !   !d0 ` << ` E f@Z@Z f@Zd(ff   (#X4X XXS+#WPCK-513+ )%. %%%r WPCKt-513+ )%. %%l%  '  _ tX XXXtXX up`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#tX XM#tXX # .#t ԀChecks#tX XJ##X4XXX #tX XXX4tXX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#tX X#tXX # #t ԀChecks# :#t #tX X#tXX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regularv WPCKt-513+ )%. %%l%'*,cCMMLOWMM1MM (MM0BMMz)MM3pc C_{p}^{LOW2`(B)}='*,cCMMLOW2MM(MMBMMb)MM3pc 9RT~=~max~LEFT\{STACK{~ET_{p}#\or#ET_{t}}RIGHT\}'*,#RT=##maxuRu4uuuuuuuuuuouR!4$$$$$"$$$$o$#ETMMp!orcETMM.t LEFT|~Z~RIGHT|~<=~LEFT\{  STACK{~0.01~\in.~H_{2}O,~\if~full~scale~<=~2.0~\in.~H_{2}O#\or#~0.03~\in.~H_{2}O,~\if~full~scale~>~2.0~\in.~H_{2}O}RIGHT\.r -LEFT|`d_{w}``d_{M1}`RIGHT|~<=~0.5~inch'*, n .cdMM.wcdcdMM.M1cqc0c.c5cinch -LEFT|`d_{w}``d_{M1}`RIGHT|~<=~0.5~inch'*, n .cdMM.wcdcdMM.M1cqc0c.c5cinch @LEFT|`d_{w}``d_{M1}  `RIGHT|~>~0.5~inch'*, n .cdMM.wcdcdMM.M1c>oc0c.c5cinch  MAX MINDtubeDtpitotDhead Tblrecalibratedi SMAXORISPL dremNullingULnullingMagnehelicPAVGP ETp ETt MinTva DWAFcalculationaldlastdwuncalibratedPCALPSTDPLATEINSP NISTPitotspiezometermitereddTB RSLO PtADiffAdiff VLOWVHIGHDxnulled% 2LEFT|`d_{w}``d_{M1}  `RIGHT|'*, n .cdMM.wcdcdMM.M1TABLE OBDf f SZhQkT0K.m01/in.H  Ul2O,?iffullscale2.0s in .9 H   l2 O>or P0MP.oP031PinP.PH  W%2POP,APifPfullPscaleP>P2P.P0q Pin P.7 PH   %2 PO LEFT|~Z~RIGHT|~<=~LEFT\{  STACK{~0.01~\in.~H_{2}O,~\if~full~scale~<=~2.0~\in.~H_{2}O#\or#~0.03~\in.~H_{2}O,~\if~full~scale~>~2.0~\in.~H_{2}O}RIGHT\.BDf f SZhQkT0K.m01/in.H  Ul2O,?iffullscale2.0s in .9 H   l2 O>or P0MP.oP031PinP.PH  W%2POP,APifPfullPscaleP>P2P.P0q Pin P.7 PH   %2 PO 'L~<=~20~ft/sec,~~~~~H~>=~100~ft/sec'*,:L:h:20m:ft:/:sec:,:H]: :100m:ft:/:sec P~>~15'*,:P:>x:154:(9 Z6Times New Roman Regular,,TABLE LTABLE L,TABLE L,TABLE L WPCK-513+ )%. %%% ,SAZ"Arial RegularpTABLE NH9 Cbar_{p}^{LOW(A)}~=~'*,=cCMMLOWMM(MMAMM)MM.pc Cbar_{p}^{HIGH(B)}~=~'*,=cCMMHIGHMM(MMBMM0)MM.pcTABLE M2 /Q+ d  QA=` 2  *`%`` fE0*/&%/&0*/&pTABLE N d_{T}~>=~6D Cbar_{p}^{HIGH(A)}'*,=cCMMHIGHMM(MMAMM0)MM.p'*,cdMMr.Tcc6 cD d_{B}~>=~8D Cbar_{p}^{HIGH(A)}~=~'*,=cCMMHIGHMM(MMAMM0)MM.pc ObsCbar_{p}^{(A)}'*,cObsHccCMM@(MMfAMM)MM&.p ObsCbar_{p}^{(A)}~=~'*,cObsHccCMM@(MMfAMM)MM&.pc TstCbar_{p}^{(A)}'*,cTstc`cCMM(MMAMMd)MM.p TstCbar_{p}^{(A)}~=~'*,cTstc`cCMM(MMAMMd)MM.pc CLEFT|~ObsCbar_{p}^{(A)}~~TstCbar_{p}^{(A)}~RIGHT|~>~0.01'*,ecObsc&cCMM(MMAMM)MMw.ppccTstcicCMM(MM#AMMm)MM.p2c>c0;c.ic01 Cbar_{p}^{LOW(B)}'*,=cCMMLOWMM(MMBMM)MM.p Cbar_{p}^{LOW(B)}~=~'*,=cCMMLOWMM(MMBMM)MM.pc Cbar_{p}^{HIGH(B)}'*,=cCMMHIGHMM(MMBMM0)MM.p ObsCbar_{p}^{(B)}'*,cObsHccCMM@(MMfBMM)MM&.p TstCbar_{p}^{(B)}'*,cTstc`cCMM(MMBMMd)MM.p ObsCbar_{p}^{(B)}~=~'*,cObsHccCMM@(MMfBMM)MM&.pc TstCbar_{p}^{(B)}~=~'*,cTstc`cCMM(MMBMMd)MM.pc CLEFT|~ObsCbar_{p}^{(B)}~~TstCbar_{p}^{(B)}~RIGHT|~>~0.01'*,ecObsc&cCMM(MMBMM)MMw.ppccTstcicCMM(MM#BMMm)MM.p2c>c0;c.ic01'*,cdMMr.Bcc8cD D_{H}~APPROX~0.1D'*,cDMM.H'c c02c.`c1cD theta_{y}'*,cMMr.y theta_{p}'*,cMMr.pTABLE P theta_{B}~=~90'*,cMMr.Bcc90nc C_{p(std)}~=~0.99~+~0.01'*,cCMM.pMM.(MM.stdMM.)cc0c.0c995cc08c.fc01 C_{p}^{LOW3`(B)}='*,cCMMLOW3MM(MMBMMb)MM3pc((3/Q$ !   d ny  <<= 8C WPC !!k-3'XXXXKKKK ? ///333???OOO___fffooof1?O/_??ߟ߿c3f3&f3?LU`l w#'*-/257:=T bjs({3=GQ[s3&?1L; UFaQl[xfp{#',04̳9׿Q.V5b;lAvGLT ` h o rux|(-8DOZfq|3fH uUb#p/:EP\fuɒџزf3uPYcl v  *D_yf(u/5;AG L R X ^!l4zH[ofu    1%MAj^z=.O;`LrVcp̙ܥ$DYނB(#G-)L20P76U<=ZAC_FJdLPiQWmV]r[cw`j|epjwo}tufp{lws}yź3">)L3$U8*`@/lG5wO:V@^EoZn̲93 `j-*`b-""~z*i N(N(9)Z}))3*X{*++{*{*$l*$l*$l*))>x);) )!(C'&K&%&&$d'^'e[(:(,(((Y(Y(N(b*`c-""~z*i((Iz(8'B''&&*&'c''' K(^(-)tH)((*`d-""~z*i+++,,,D,D,,,,c+E+.+]+0+**** ++>+>+`*`* * * *'*Di*aT*!**))Hx) ) )a)a)a)O)O)Q*Q*Q*U*A*=*; +bc++++++*`e-""~z*i3-3-8-9-xE-i.-Y-M -7,,,,,--+-+------o----x)-,p,+++++++5,(,x,;-=`-m1--y,-,,++5++$*Y*S*,*+|+O+oH,;,N,0,W,o,3-3-b*`f-""~z*i , ,0x,9X,,,,+++r+++<+l++DV,,,,,^*`g-""~z*i11b0F050e00/h//......G.G.5.5.5....r.r.r.B.B.;.;.;.-6-+-+---P -P -P -Q..%.%.5/5/5///////s0s0a0a0a0//X/qb/Yn/;//0YP0tl0}000000000011"*`h-""~z*i 0 0 0 0 0n W0Z ;0: 0 / / / / /y /a /3 %0 E0 E0r 0r 0 11 V1S 1S 18 18 1" 1" 1" 1 ~1 U1K 1 81 M11311^000q0C0|30A/A/Y/Y/o/o/o/ 00L0L0 / / =/ =/ =/6 . '/# /c / %0 0 0TABLE I B_XS XXX XXSPreparedby   #XS X/#U.S.EnvironmentalProtectionAgency  CleanAirMarketsDivision,6204J401MStreet,SWWashington,D.C.20460 #X4X XXS#,SAZ"Arial RegularWPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%%  Cbar_{p}^{LOW(A)}'*,=cCMMLOWMM(MMAMM)MM.p Cbar_{p}^{LOW(A)}='*,=cCMMLOWMM(MMAMM)MM.p>c Cbar_{p}^{LOW(B)}'*,=cCMMLOWMM(MMBMM)MM.p Cbar_{p}^{LOW(B)}='*,=cCMMLOWMM(MMBMM)MM.p>cWPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X #  sigma_{LOW}^{(A)}~='*,c%MM|(MMAMM)MM|3LOWc,SAZ"Arial Regular  sigma_{LOW}^{(A)}~<=~0.01'*,c%MM|(MMAMM)MM|3LOWcrc0c.c01 sigma_{LOW}^{(B)}~<=~0.01'*,c%MM|(MMBMM)MM|3LOWcrc0c.c01 sigma_{LOW}^{(A)}'*,c%MM|(MMAMM)MM|3LOW Cbar_{p}'*,=cCMM.p sigma_{LOW}^{(B)}'*,c%MM|(MMBMM)MM|3LOW Cbar_{p}'*,=cCMM.p sigma_{LOW}^{(B)}~='*,c%MM|(MMBMM)MM|3LOWc @LEFT|Cbar_{p}^{LOW(A)}~~Cbar_{p}^{LOW(B)}RIGHT|~<=~0.01'*,ffEcCMMLOWMM(MMAMM )MM.pce<cCMMLOWMM(MMBMM@)MM.pcic0c.c01 Cbar_{p}'*,=cCMM.p C_{p}^{HIGH``1`(A)}='*,cCMMHIGHMM1MM"(MMHAMM)MM3pcWPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%%  WPCKt-513+ )%. %%l% ) "  _"XS XXX*#p$ddd Xdd Xdd X{*{*,**dd +  /  /" ! XXSObserversNotes#"XS X! ,# C9&dd"    C6,***"     6*e%p&dd**dd **p{*{*e, dd ,(HH +  + nn +ID =,!" =Notes C9&"   C 9/!LL 9 C9&LL   C 9/!   9 C9&     C 9/!  96,*     6*x'p(dd dd (HH (p{*{*x,Idd +  !   !d)0 ` << ` E f@Z@Z f@Zd(ff   (#+X4X XXS+#,SAZ"Arial RegularpTABLE NH9TABLE M2TABLE I B_*XS XXX* XXSPreparedby   #*XS X/#U.S.EnvironmentalProtectionAgency  CleanAirMarketsDivision,6204J401MStreet,SWWashington,D.C.20460 #+X4X XXS#,SAZ"Arial Regular(9 Z6Times New Roman Regular /Q+ d  -QA=` 2  *`%`` fE0*/&%/&0*/&. WPC !!k-3'XXXXKKKK ? ///333???OOO___fffooof1?O/_??ߟ߿c3f3&f3?LU`l w#'*-/257:=T bjs({3=GQ[s3&?1L; UFaQl[xfp{#',04̳9׿Q.V5b;lAvGLT ` h o rux|(-8DOZfq|3fH uUb#p/:EP\fuɒџزf3uPYcl v  *D_yf(u/5;AG L R X ^!l4zH[ofu    1%MAj^z=.O;`LrVcp̙ܥ$DYނB(#G-)L20P76U<=ZAC_FJdLPiQWmV]r[cw`j|epjwo}tufp{lws}yź3">)L3$U8*`@/lG5wO:V@^EoZn̲93 `j-*`b-""~z*i N(N(9)Z}))3*X{*++{*{*$l*$l*$l*))>x);) )!(C'&K&%&&$d'^'e[(:(,(((Y(Y(N(b*`c-""~z*i((Iz(8'B''&&*&'c''' K(^(-)tH)((*`d-""~z*i+++,,,D,D,,,,c+E+.+]+0+**** ++>+>+`*`* * * *'*Di*aT*!**))Hx) ) )a)a)a)O)O)Q*Q*Q*U*A*=*; +bc++++++*`e-""~z*i3-3-8-9-xE-i.-Y-M -7,,,,,--+-+------o----x)-,p,+++++++5,(,x,;-=`-m1--y,-,,++5++$*Y*S*,*+|+O+oH,;,N,0,W,o,3-3-b*`f-""~z*i , ,0x,9X,,,,+++r+++<+l++DV,,,,,^*`g-""~z*i11b0F050e00/h//......G.G.5.5.5....r.r.r.B.B.;.;.;.-6-+-+---P -P -P -Q..%.%.5/5/5///////s0s0a0a0a0//X/qb/Yn/;//0YP0tl0}000000000011"*`h-""~z*i 0 0 0 0 0n W0Z ;0: 0 / / / / /y /a /3 %0 E0 E0r 0r 0 11 V1S 1S 18 18 1" 1" 1" 1 ~1 U1K 1 81 M11311^000q0C0|30A/A/Y/Y/o/o/o/ 00L0L0 / / =/ =/ =/6 . '/# /c / %0 0 0  '  __ 0 XX1 2p`\ j~2 ppK@@@ ) H4KE ppe#0 ]#1 ProbeChecks#0 C#1 4p`\ j~2 ppK@@@ ) 4KE pp @7  4  ڈU.6p`\ j~2 ppK@@@ ) 4KE ppeProbe#1X X>#1XX _Ԁ_Checks#0 #1 _Ԁ8p`\ j~2 ppK@@@ ) H4KEH pp#0 ##0X4X _# (9 Z6Times New Roman Regular,SAZ"Arial Regular3 WPCKt-513+ )%. %%l%5 WPCK-513+ )%. %%%7 WPCK-513+ )%. %%%9 WPCKt-513+ )%. %%l%  d)  _ ; XX< =p`\ j~2 ppK@@@ ) H4KE ppeProbeChecks?p`\ j~2 ppK@@@ ) 4KE ppy @7  4  ڈT.Ap`\ j~2 ppK@@@ ) 4KE ppeProbeChecksCp`\ j~2 ppK@@@ ) H4KEv pp+#; M##;X4X .# (9 Z6Times New Roman Regular,SAZ"Arial Regular> WPCKt-513+ )%. %%l%@ WPCK-513+ )%. %%%B WPCK-513+ )%. %%%D WPCKt-513+ )%. %%l%  '  _ F XXG Hp`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks#F M##FX4X .#GX XXX4GXX ԀJp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.Lp`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks#F l#G #GX X#GXX ԀNp`\ j~2 ppK@@@ ) H4KE pp#F k##FX4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial RegularI WPCKt-513+ )%. %%l%K WPCK-513+ )%. %%%M WPCK-513+ )%. %%%O WPCKt-513+ )%. %%l%  d)  _ Q XXR Sp`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks#Q M##QX4X .#RX XXX4RXX ԀUp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.Wp`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks#Q l#R #RX X#RXX ԀYp`\ j~2 ppK@@@ ) H4KE pp#Q k##QX4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial RegularT WPCKt-513+ )%. %%l%V WPCK-513+ )%. %%%X WPCK-513+ )%. %%%Z WPCKt-513+ )%. %%l%  '  _ \X XXX\XX ]p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#\X XM##_X4XXX .#\X XXX4\XX Ԁ`p`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.bp`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks#_ s#\ #\X X#\XX Ԁdp`\ j~2 ppK@@@ ) H4KE pp;#_ y##_X4X ܻ# ,SAZ"Arial Regular^ WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regulara WPCK-513+ )%. %%%c WPCK-513+ )%. %%%e WPCKt-513+ )%. %%l%  d)  _ gX XXXgXX hp`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#gX XM##jX4XXX .#gX XXX4gXX Ԁkp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.mp`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks#j s#g #gX X#gXX Ԁop`\ j~2 ppK@@@ ) H4KE pp;#j y##jX4X ܻ# ,SAZ"Arial Regulari WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regularl WPCK-513+ )%. %%%n WPCK-513+ )%. %%%p WPCKt-513+ )%. %%l%  '  _ rX XXXrXX sp`\ j~2 ppK@@@ ) H4KE ppe#rX XM#rXX #u .#r WallEffects(Method2H)#rX X3#rXX #u u#r ԀChecks#u ##uX4X #rX XXX4rXX Ԁvp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.xp`\ j~2 ppK@@@ ) t4KE ppeF߀#rX X#rXX #u }#r WallEffects(Method2H)#rX Xf#rXX #u #r ԀChecks#u D##uX4X #rX XXX4rXX Ԁzp`\ j~2 ppK@@@ ) H4KE pp#u ##uX4X # ,SAZ"Arial Regulart WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regularw WPCK-513+ )%. %%%y WPCK-513+ )%. %%%{ WPCKt-513+ )%. %%l% X d)  _ }X XXX}XX ~p`\ j~2 ppK@@@ ) H4KE ppeWallEffects(Method2H)#}X XM#}XX # .#} ԀChecks#}X XK##X4XXX #}X XXX4}XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.p`\ j~2 ppK@@@ ) t4KE ppeF߀#}X X#}XX # #} WallEffects(Method2H)#}X X#}XX # $#} ԀChecks# ##X4X ~#}X XXX4}XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ,##X4X K# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% 6 '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.p`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#X X#XX # h# ԀChecks# # #X X\#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# ##X4X )# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% 6 d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeWindTunnelChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE pp@jj6  32  ڈN.p`\ j~2 ppK@@@ ) 4KE ppe߀WindTunnel#X X#XX # h# ԀChecks# # #X X\#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# ##X4X )# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeCalibrationPerformance#X XM#XX # .# ԀChecks#X XJ##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE pp=F@jj6  37  ڈ**B.p`\ j~2 ppK@@@ ) t4KE ppeF߀CalibrationPerformance#X X#XX # # ԀChecks# :# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% ) "  _XS XXX*pddd Xdd Xdd X{*{*,**dd +  /  / ! XXSObserversNotes#XS X! ,# C9&dd"    C6,***"     6*epdd**dd **p{*{*e, dd ,(HH +  + nn +ID =,!" =Notes C9&"   C 9/!LL 9 C9&LL   C 9/!   9 C9&     C 9/!  96,*     6*xpdd dd (HH (p{*{*x,Idd +  !   !d0 ` << ` E f@Z@Z f@Zd(ff   (#X4X XXS+#,SAZ"Arial RegularpTABLE NH9TABLE M2TABLE I B_XS XXX XXSPreparedby   #XS X/#U.S.EnvironmentalProtectionAgency  CleanAirMarketsDivision,6204J401MStreet,SWWashington,D.C.20460 #X4X XXS#,SAZ"Arial Regular(9 Z6Times New Roman Regular /Q+ d  QA=` 2  *`%`` fE0*/&%/&0*/& WPC !!k-3'XXXXKKKK ? ///333???OOO___fffooof1?O/_??ߟ߿c3f3&f3?LU`l w#'*-/257:=T bjs({3=GQ[s3&?1L; UFaQl[xfp{#',04̳9׿Q.V5b;lAvGLT ` h o rux|(-8DOZfq|3fH uUb#p/:EP\fuɒџزf3uPYcl v  *D_yf(u/5;AG L R X ^!l4zH[ofu    1%MAj^z=.O;`LrVcp̙ܥ$DYނB(#G-)L20P76U<=ZAC_FJdLPiQWmV]r[cw`j|epjwo}tufp{lws}yź3">)L3$U8*`@/lG5wO:V@^EoZn̲93 `j-*`b-""~z*i N(N(9)Z}))3*X{*++{*{*$l*$l*$l*))>x);) )!(C'&K&%&&$d'^'e[(:(,(((Y(Y(N(b*`c-""~z*i((Iz(8'B''&&*&'c''' K(^(-)tH)((*`d-""~z*i+++,,,D,D,,,,c+E+.+]+0+**** ++>+>+`*`* * * *'*Di*aT*!**))Hx) ) )a)a)a)O)O)Q*Q*Q*U*A*=*; +bc++++++*`e-""~z*i3-3-8-9-xE-i.-Y-M -7,,,,,--+-+------o----x)-,p,+++++++5,(,x,;-=`-m1--y,-,,++5++$*Y*S*,*+|+O+oH,;,N,0,W,o,3-3-b*`f-""~z*i , ,0x,9X,,,,+++r+++<+l++DV,,,,,^*`g-""~z*i11b0F050e00/h//......G.G.5.5.5....r.r.r.B.B.;.;.;.-6-+-+---P -P -P -Q..%.%.5/5/5///////s0s0a0a0a0//X/qb/Yn/;//0YP0tl0}000000000011"*`h-""~z*i 0 0 0 0 0n W0Z ;0: 0 / / / / /y /a /3 %0 E0 E0r 0r 0 11 V1S 1S 18 18 1" 1" 1" 1 ~1 U1K 1 81 M11311^000q0C0|30A/A/Y/Y/o/o/o/ 00L0L0 / / =/ =/ =/6 . '/# /c / %0 0 0  '  __  XX p`\ j~2 ppK@@@ ) H4KE ppe# ]# ProbeChecks# C# p`\ j~2 ppK@@@ ) 4KE pp @7  4  ڈU.p`\ j~2 ppK@@@ ) 4KE ppeProbe#X X>#XX _Ԁ_Checks# # _Ԁp`\ j~2 ppK@@@ ) H4KEH pp# ##X4X _# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _  XX p`\ j~2 ppK@@@ ) H4KE ppeProbeChecksp`\ j~2 ppK@@@ ) 4KE ppy @7  4  ڈT.p`\ j~2 ppK@@@ ) 4KE ppeProbeChecksp`\ j~2 ppK@@@ ) H4KEv pp+# M##X4X .# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _  XX p`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.p`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _  XX p`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.p`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC. p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁ p`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular  WPCK-513+ )%. %%%  WPCK-513+ )%. %%%  WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppe#X XM#XX # .# WallEffects(Method2H)#X X3#XX # u# ԀChecks# ##X4X #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA. p`\ j~2 ppK@@@ ) t4KE ppeF߀#X X#XX # }# WallEffects(Method2H)#X Xf#XX # # ԀChecks# D##X4X #X XXX4XX Ԁ"p`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%%! WPCK-513+ )%. %%%# WPCKt-513+ )%. %%l% X d)  _ %X XXX%XX &p`\ j~2 ppK@@@ ) H4KE ppeWallEffects(Method2H)#%X XM#%XX #( .#% ԀChecks#%X XK##(X4XXX #%X XXX4%XX Ԁ)p`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.+p`\ j~2 ppK@@@ ) t4KE ppeF߀#%X X#%XX #( #% WallEffects(Method2H)#%X X#%XX #( $#% ԀChecks#( ##(X4X ~#%X XXX4%XX Ԁ-p`\ j~2 ppK@@@ ) H4KE pp#( ,##(X4X K# ,SAZ"Arial Regular' WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular* WPCK-513+ )%. %%%, WPCK-513+ )%. %%%. 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XXSObserversNotes#rXS X! ,# C9&dd"    C6,***"     6*eupvdd**dd **p{*{*e, dd ,(HH +  + nn +ID =,!" =Notes C9&"   C 9/!LL 9 C9&LL   C 9/!   9 C9&     C 9/!  96,*     6*xwpxdd dd (HH (p{*{*x,Idd +  !   !dy0 ` << ` E f@Z@Z f@Zd(ff   (#{X4X XXS+#,SAZ"Arial RegularpTABLE NH9TABLE M2TABLE I B_zXS XXXz XXSPreparedby   #zXS X/#U.S.EnvironmentalProtectionAgency  CleanAirMarketsDivision,6204J401MStreet,SWWashington,D.C.20460 #{X4X XXS#,SAZ"Arial Regular(9 Z6Times New Roman Regular /Q+ d  }QA=` 2  *`%`` fE0*/&%/&0*/&~ WPC !!k-3'XXXXKKKK ? ///333???OOO___fffooof1?O/_??ߟ߿c3f3&f3?LU`l w#'*-/257:=T bjs({3=GQ[s3&?1L; UFaQl[xfp{#',04̳9׿Q.V5b;lAvGLT ` h o rux|(-8DOZfq|3fH uUb#p/:EP\fuɒџزf3uPYcl v  *D_yf(u/5;AG L R X ^!l4zH[ofu    1%MAj^z=.O;`LrVcp̙ܥ$DYނB(#G-)L20P76U<=ZAC_FJdLPiQWmV]r[cw`j|epjwo}tufp{lws}yź3">)L3$U8*`@/lG5wO:V@^EoZn̲93 `j-*`b-""~z*i N(N(9)Z}))3*X{*++{*{*$l*$l*$l*))>x);) )!(C'&K&%&&$d'^'e[(:(,(((Y(Y(N(b*`c-""~z*i((Iz(8'B''&&*&'c''' K(^(-)tH)((*`d-""~z*i+++,,,D,D,,,,c+E+.+]+0+**** ++>+>+`*`* * * *'*Di*aT*!**))Hx) ) )a)a)a)O)O)Q*Q*Q*U*A*=*; +bc++++++*`e-""~z*i3-3-8-9-xE-i.-Y-M -7,,,,,--+-+------o----x)-,p,+++++++5,(,x,;-=`-m1--y,-,,++5++$*Y*S*,*+|+O+oH,;,N,0,W,o,3-3-b*`f-""~z*i , ,0x,9X,,,,+++r+++<+l++DV,,,,,^*`g-""~z*i11b0F050e00/h//......G.G.5.5.5....r.r.r.B.B.;.;.;.-6-+-+---P -P -P -Q..%.%.5/5/5///////s0s0a0a0a0//X/qb/Yn/;//0YP0tl0}000000000011"*`h-""~z*i 0 0 0 0 0n W0Z ;0: 0 / / / / /y /a /3 %0 E0 E0r 0r 0 11 V1S 1S 18 18 1" 1" 1" 1 ~1 U1K 1 81 M11311^000q0C0|30A/A/Y/Y/o/o/o/ 00L0L0 / / =/ =/ =/6 . '/# /c / %0 0 0  '  __  XX p`\ j~2 ppK@@@ ) H4KE ppe# ]# ProbeChecks# C# p`\ j~2 ppK@@@ ) 4KE pp @7  4  ڈU.p`\ j~2 ppK@@@ ) 4KE ppeProbe#X X>#XX _Ԁ_Checks# # _Ԁp`\ j~2 ppK@@@ ) H4KEH pp# ##X4X _# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _  XX p`\ j~2 ppK@@@ ) H4KE ppeProbeChecksp`\ j~2 ppK@@@ ) 4KE ppy @7  4  ڈT.p`\ j~2 ppK@@@ ) 4KE ppeProbeChecksp`\ j~2 ppK@@@ ) H4KEv pp+# M##X4X .# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _  XX p`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.p`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _  XX p`\ j~2 ppK@@@ ) H4KE ppeOtherEquipmentChecks# M##X4X .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) 4KE8 pp@jj6  11  ڈ""J.p`\ j~2 ppK@@@ ) 4KE ppe߀OtherEquipmentChecks# l# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# k##X4X ܭ# (9 Z6Times New Roman Regular,SAZ"Arial Regular WPCKt-513+ )%. %%l% WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeFieldTestPerformanceChecks#X XM##X4XXX .#X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE, ppF@jj6  19  ڈC.p`\ j~2 ppK@@@ ) t4KE ppeF߀FieldTestPerformanceChecks# s# #X X#XX Ԁp`\ j~2 ppK@@@ ) H4KE pp;# y##X4X ܻ# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l%  '  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppe#X XM#XX # .# WallEffects(Method2H)#X X3#XX # u# ԀChecks# ##X4X #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.p`\ j~2 ppK@@@ ) t4KE ppeF߀#X X#XX # }# WallEffects(Method2H)#X Xf#XX # # ԀChecks# D##X4X #X XXX4XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ##X4X # ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% X d)  _ X XXXXX p`\ j~2 ppK@@@ ) H4KE ppeWallEffects(Method2H)#X XM#XX # .# ԀChecks#X XK##X4XXX #X XXX4XX Ԁp`\ j~2 ppK@@@ ) t4KE ppOF@jj6  25  ڈA.p`\ j~2 ppK@@@ ) t4KE ppeF߀#X X#XX # # WallEffects(Method2H)#X X#XX # $# ԀChecks# ##X4X ~#X XXX4XX Ԁp`\ j~2 ppK@@@ ) H4KE pp# ,##X4X K# ,SAZ"Arial Regular WPCKt-513+ )%. %%l%(9 Z6Times New Roman Regular WPCK-513+ )%. %%% WPCK-513+ )%. %%% WPCKt-513+ )%. %%l% ADiff~=~LEFT|~DELTAP_{t}~~DELTAP_{t+1}~RIGHT|~<=~\max~\of~LEFT\{STACK{~0.01~\in.~H_{2}O#\or#~2%~TIMES~DELTAP_{t}}RIGHT\}BDADiffmT T 7P  t3P  et    1amaxofhQkT ! $ $ $ h$ Q$ " $ $ $ k$ T$ #0?.a01# in . H  I l2w O orNP2P%< P' P PP  j %t !  _X XXXXX _______________C$E$H$H$H$|H$E$E$E$C$C$,C$_ P _____________TRP$'3 Letter LandscapeX3' Letter'3 Letter Landscape3'T*pddd Xdd Xdd X..,0*dd +  / ;Z (#/ Q ObserversChecklists   @@ (forTestMethods2F,2G,and_2H # Q)#:0.k" (# P :8*a* dXXd8` ` i_   `     h _Թ*epN dd0*dd 0*p..e,"dd +  "  Q " Contents 0&! " 0X XGeneralInformationandNotes,Terminology,andMathematicalExpressions=*=*Z*.{#{#Z3 f  ProbeChecks=*=*Z*. 4 2  OtherEquipmentChecks))Y*.(11  FieldTestPerformanceChecks))Y*./19 a  #XX #X XWallEffects(Method2H)Checks))Y*.yy125#XX g #X XԈ -  WindTunnelChecks))Y*.))$32 b CalibrationPerformanceChecks))Y*.--037 . ObserversNotes))Y*.%%#48  #XX #(:   (*epdN d"dd "p..e,"dd +   [ _X XThecheckliststhatfollowattempttobecomprehensive.Observersmaynothavetimetoperform ( allthechecks.However,theintentistoequipobserverswithascompleteabatteryofchecksaspossible,leavingittotheirdiscretiontoimplementthosechecksmostsuitabletotheimmediatecircumstances.#XX #X X_ԀAnyerrorsoromissionsinthispublicationdonotimplyrevisionsorwaiversof !q theprovisionsofMethods2F,2G,or2H.DeterminationofcomplianceshouldbemadebydirectreferencetotheprovisionsoftheapplicablemethodsandtorelatedguidanceissuedbyEPAX4XXX ._#X XXX4##XX  #_ #=!   $U" _*epdd"dd "p..e,,dd , dd , dd ,dd ,8dd , dd ,dd +  .  .X X GeneralInformation  Ed XX  >)$+J" > ;& ;NameofSource: 6#! 6 2 2 ;& ;TestingContractor: 6#! 6 2 2 2  2 ;&  ;ORISPL(ifavailable): 6#!  6 2  2 ;&  ;Address: 6#! 6 2 2 2 2 ;&-L ;UnitID(ifavailable): 6#!-L 6 2-L 2 ;&-L ; 6#!-L 6 2-L 2 2-L 2 ;& ;Location(townorcity,state): 6#! 6 2 2 ;& ;Contact: 6#! 6 2 2 2 2 ;& ;Contact: 6#!  6 2! 2 ;&"  ;PhoneNumber: 6#!#  6 2$ 2 2% 2 ;&/ N &  ;PhoneNumber: 6#!/ N '  6 2/ N ( 2 2/ N ) 2 2/ N *  2 2/ N +  2 2/ N , 2 2 - 2 2 . 2 2 / 2 2 0 2 2 1 2 2 2 2 6! 3 6 L7) 4 LAuditor/Observer: 6#! 5 6 6! 6 6 L7) 7  LDate: 6#! 8  6 2 9 2 ( : ( /  : /Organization: 6#!1P ; 6 (1P < ( &  < & 21P = 2 21P > 2 21P ? 2 ;&@ ;Location: 6#!A 6 2B 2 2C 2 2D 2 2E 2 7"F f7 ;&G  ;Phone#: 6#!H  6 2I 2 2J 2 2K  2 2L 2 7"M f  7 2CbN 2 2CbO 2 2CbP 2 2CbQ 2 2CbR 2 2CbS 2(CbT  (8*a* d* d8*p d d,dd , dd dd dd 8dd 8 dd  dd p..,0*dd +  " V @"X X Notes,Terminology,andMathematicalExpressions #XX $# 9/!<W"@ 9Notes X 1.AnelectroniccopyofthischecklistisavailableinCorelWordPerfect8.0.IfdataareenteredintheelectronicversionoftheChecklist,certaincalculationshavebeenprogrammedtobeperformedautomaticallybytheWordPerfectsoftware(e.g.,calculationofdbanddreminitem :Z 45c,Adiffinitem64d,%Diffinitems65dand66d,andvariousstatisticsrelatedtoMethod2Gcalibrationsinitem72).Toautomaticallyhave [ WordPerfectcalculatesuchvalueseverytimeyouchangedata,clickinthetablecellwherethecalculationislocated,click Tableonthetoolbar.Select Calculateandplacedotin CalculateTableoption.TerminologyandMathematicalExpressions _ W,-! `EW0 means xisgreaterthanorequaltoaandlessthanorequaltob  |. |. W./! `E\\\W l  meanstheabsolutevalueofquantityx. +Jb W01! `EW0 isashorthandequivalentofwritingW23! `EW.Itisalsoanalgebraicwayofexpressingthatxiswithinaof0.For d example,therequirementthat pressuresRandCshallagreetowithin3%canbewrittenalgebraicallyasW45! `EJ)W J)W W, q e whichisequivalenttoW67! `E6!6!W;1/3!R f |. |.   ;  %"D!f *epedd0*dd 0*p ..e,u*dd +  / k / !ProbeChecks#! .# C9&d"    C6,**"     68*a* d* d8C$E$H$H$H$H$E$E$E$C$C$/C$C$E$H$!H$H$H$E$E$E$C$C$:C$*e@pAdedu*dd u*p..e, dd ,KHH ,nHH ,KHH ,HH ,|HH ,HH ,<dd ,dd ,~dd ,dd ,dd ,dd ,dd , dd +  + n +ID A0!=" A*dXx XX*Parameters D3$=" DSpecifications @/$=" @Cite =,!=" =Outcome J5&="   JIdentificationNumberandProbeType jY$( UUUUUU? 0.0416666667UUUUUU?j1a kZK~  UUUUUU? 0.0416666667 UUUUUU? kIDnumberorcodeappearingonprobe @/$@  @򀀀 A0!~ " APermanentuniqueIDnumberorcodemustappearonprobesheath epT$@ ffffff@6.1ffffff@e6.1 spbS~"11 ffffff@6.1 ffffff@p s򀀀Pass @+ 򀀀Fail RpA2~"11p R1b RA2 996p RProbeTypeUsed(Indicateprobetypeused.) Dp3$   D ;p* 2p ; 2p! 2p 2 7- p @7Method2G E6$W "@ @EMethod2F Dp3$W "@ D ;p* p ; 7p& p V7 3)I p 3 8p'! B   8 7- B p  7TypeS :p)$ B   : 0& B p 0DAT >/! B   > 7p&! B  7 0& B p 0DAT 7p&! B   7 0& B p 0Spherical Ap0! B   A ;p*I p ; 0& I  V p 0 $  4  $ 8p'!   8 7- p 7Spherical <2$ ! < 9/! " 9 >/! #  > 9/! $ 9 9/! %  9 9/! &  9 9/! '  9 Ap0! (  A ;p* 4 (p ; 8. 4 (p 8 (  ( ( E6$ ) E 4*$ * 4   *  .p *   . ;p*L *p ;Ifprobetypesotherthanthoselistedabovewereused,mark Fail.Ifnot,mark Pass. Dp3$ +p  D ;p*L +p ; ?*L +p ?Sheath cY$q, UUUUUU? 0.0833333333UUUUUU?c2a UK<\- UUUUUU? 0.0833333333 UUUUUU? UShallberigidlyattachedtoprobeassembly .$\.  .2F:6.1.52G:6.1.4 8.#K1" g 8򀀀Pass @+ 򀀀Fail *\2" *2b =0!3 =Shallencloseallpressurelinesfromprobeheadtofarthestpositionawayfromtheprobeheadwhereananglemeasuringdevicemaybeattachedinfield =3$t5  = $ N5 $򀀀Pass @+ 򀀀Fail 9,!6" 92c =0!57 =Shallprovidesurfaceforinscribingapermanentscribeline =3$58  = $ f8 $򀀀Pass @+ 򀀀Fail 9,!59" 92d =0! : =Shallaccommodateattachmentofananglemeasuringdevice =3$ ;  = $ '; $򀀀Pass @+ 򀀀Fail XK! <"  @2@X2e \O@v=  @2 @ \Shallfacilitatepreciserotationalmovementofprobefordeterminingyawangles =3$v>  = $ }> $򀀀Pass @+ 򀀀Fail E0!v?" ELength(manualprobesonly) cpR$7@  @3@c3 j`Q"Ai  @3 @p jEffectivelength(L)fromprobeheadtoendofprobe(includinganyprobeextensionsifnecessary) * *F *L=򀀀feet 2p!"G" 2Itisrecommendedthattheeffectivelengthoftheprobe(coupledwithaprobeextension,ifnecessary)beatleast3feetlongerthanthefurthesttraversepointmarkingontheprobeshaft,i.e.,@44=Y;B# `XED=ZZD=ZY߈ UpD5WM p U2F:6.1.7.12G:6.1.6.1 RpA2*R" //$p RRecommendation "S only Ip82OT"  hp I ;p*Tp ;Distance(D)fromfurthesttraversepointmarkonprobeshafttoprobehead @p/$1"Xp @D=򀀀feet 8p'!Y"p 8 ;p*Yp ; ;p*Yp ;?*Yp ?Scribeline(manualprobesonly) XN$d  @4@X4 J@1  @4 @ JMustbepermanentlyinscribedonprobesheath.(Note:Thescribelinemaybeasingleshortlinesegment,e.g.,6inchesinlength,multiplelinesegmentsplacedatvariouslocationsalongthelengthoftheprobesheath,orasinglecontinuouslineextendingalongthefulllengthoftheprobesheath.) *   *2F:6.1.6.12G:6.1.5.1 ' " '򀀀Pass @+ 򀀀Fail F<"  @5@F5 J@1   @5 @ JWidth *   *򀀀inches +!  +Width1/16inch *  " *2F:6.1.6.1,10.4̀2G:6.1.5.1 ' " '򀀀Pass @+ 򀀀Fail J@ "  @6@J6 bQB1  '  @6 @ bMaximumrotationalangle(MAX)measured   alongscribeline @/$~  @MAX=򀀀degrees :0!1 " :Therotationalpositionofthescribelineshallnotvarybymorethan2,i.e.,@JJ=[# `ED5..D5.[߈ ?5&9#//' ?6.1.6.310.4.1 <2# %"  ' <򀀀Pass @+ 򀀀Fail :)#1 &"' : 4*p& 4Minimumrotationalangle(MIN)measured ( alongscribeline * X) *MIN=򀀀degrees )p *" ) ;p*p*p ; 4*p*p 4 Gp6 p*  @7@G7 `pO@+  @7 @p `Rotationalpositionofscribelinerelativetotheprobesimpactpressureport. @p/$+/p @򀀀degrees Ap0!0"p A90or180fromtheprobesimpactpressureport bpQ$1p L2@18.3L2@b18.3 _pNC2" L2@18.3 L2@p _Recommendationonly E0!p4"p EScribeLineSurrogate(automatedprobesonly) cpR$J5   @8 @c8 j`Q611,   @8  @p jWhatphysicalfeatureisbuiltintotheautomatedprobedesigntoserveasanindicatorofthereferencepositionoftheprobehead? .$: .Ifanautomatedprobedoesnothaveareferencescribeline,a flat(orcomparable,clearlyidentifiablephysicalcharacteristic)mustbeprovidedontheprobecasingorflangeplatetoensurethatthereferencepositionoftheprobeassemblyremainsinaverticalorhorizontalposition.If a, b,or carenotchecked,mark Fail.If a, b,or cischecked,mark Pass. Fp5&rD ++, F10.4.3 RpA2E" 11,p R򀀀Pass @+ 򀀀Fail Ip82F" 11,p I 7-Fp  7a 3p&$s<G"  3 4*s<Hp  4Scribeline Dp3$s<I  D ;p*Ip ; ;p*Ip ; 7p&Ip 7 7-e.Ip 7 Dp3$J D ;p*e.Jp ; ;p*e.Jp ; 7p& e.J  p 7 7- Jp  7b 3p&$q:K"  3 4*q:Lp  4Flat 4*$q:M  4 ,p  M , ;p* Mp ; 7p& Mp 7 4*c,Mp 4 %N % ,p c,N , ;p*c,Np ; 7p& c,N  p 7 7- Np  7c 3p&$o 8O"  3 0&o 8Pp 0Other: 4*!o 8Q   4򀀀 ;p*o 8R  ; ;p* Rp ; ;p* Rp ; 7p& Rp 7 4*a!*Rp 4 5p$!S 5 ;p*a!*Sp ; ;p*a!*Sp ;D/ a!*S  p DPressuretubings _pN$%d  "@9"@_9 `pO@{  "@9 "@p `Insidediameter(Dtube)of { tubing @p/$=|p @Dtube=򀀀inches Ap0!{p AThetubingshouldhaveaninsidediameterofatleast1/8inch,i.e.,@5Dtube1/8inch @p/$ p @2F:6.1.82G:6.17 =p,!=| "p =Recommendationonly E0!=| "p ETypeSProbesCriticalDimensionsandCharacteristics `pO$ V  $@10$@`10 apPAm   $@10 $@p aExternaldiameter(Dt)of m  pitottubing @p/$/ np @Dt=򀀀inches Ap0!m p ADt3/8inch @p/$m p @2G:6.1.1 =p,!m "p =򀀀Pass @+ 򀀀Fail apP!m "p  &@11&@a11 raR 5  &@11 &@p rMarkonfirstleg @/$  @G2(Checkoffifpresent)#2Gn#   򀀀A򀀀B Ap0! " AOnelegofthetubemustbemarkedA,andtheother,B. UpD5G   5p U2G:10.2.1 RpA2G "  5p R򀀀Pass @+ 򀀀Fail Ip82 "5p I ;p* p ;Markonsecondleg @p/$7v p @G2(Checkoffifpresent)#2Glq# 7v ! 򀀀A򀀀B Ap0! #"p A ;p* #p ; ;p* #p ; [pJ #p  (@12(@[12 raR($ ;  (@12 (@p rBasetoopeningplanedistance(PA)onfirstleg @/$& @PA=򀀀inches Ap0!('" APAandPBshallbeequal. UpD5((";p U2G:10.2.1 RpA2*"  ;p R򀀀Pass @+ 򀀀Fail Ip82(+";p I ;p*+p ;Basetoopeningplanedistance(PB)onsecond - leg @p/$.p @PB=򀀀inches Ap0!@/"p A ;p*/p ; ;p*/p ; [pJ/p  *@13*@[13 raR0=  *@13 *@p rDistance(A)betweenopeningplanesoftwolegs @/$_3 @A=򀀀inches Ap0!4 A2.10DtA3.00Dt UpD55"=p U2G:10.2.1 RpA27"  =p RRecommendationonly Ip829"  =p I ;p*Q9p ;Externaldiameter(Dt)of : tubing @p/$w;p @Sameasitem10 Ap0!<p A ;p*Q<p ; ;p*Q<p ; aPQ<p UUUUUU? 0.0833333333UUUUUU?a14a kZK = UUUUUU? 0.0833333333 UUUUUU? kAlignmentparametersforopeningplaneoffirstleg 7&$Q@ 71=򀀀degrees  A 1=򀀀degrees 8'B 8bGH*`) `EDh h Dh b @/$RF" @2G:6.1.1&Table2G1 =,!QI" =򀀀Pass @+ 򀀀Fail =,! J" =14b A0!iK AAlignmentparametersforopeningplaneofsecondleg 7&$ ,N 72=򀀀degrees iO 2=򀀀degrees 8'+ jP 8b+* `) `ED|h h D|h  b @/$!T" @2G:6.1.1&Table2G1 =,! ,W" =򀀀Pass @+ 򀀀Fail =,!iX" =14c A0!#DY ALongitudinalseparationdistance(w) 7&$# [ 7w=򀀀inches 8'#D\ 8w0.02inch @/$#D]" @2G:6.1.1&Table2G1 =,!$ `" =򀀀Pass @+ 򀀀Fail 6,!#Da" 614d +!d +Perpendicularseparation distance(z) !]& !z=򀀀inches " d "z0.02inch * d" *2G:6.1.1&Table2G1 '" '򀀀Pass @+ 򀀀Fail RpAd "  .@15.@R15 raRu>  %?  .@15 .@p rTypeSprobewithsamplingnozzle [pJ$u>   *@13*@[ [pJ;g0   *@13 *@p [WasasamplingnozzlecoupledwiththeTypeSprobe? Dp3$V p DIfso,thenperformthechecksspecifiedbelowinitem#69ac.Theseincludeachecktoensurethatawindtunneldemonstrationwasperformedwhichshowedthatthenozzledoesnotimpairtheprobesabilitytoyawnull.Ifalltheprovisionsofthesechecksaresatisfied,mark Pass.Ifanyprovisioninthesechecksisnotmet,mark Fail. @p/$W p @2F,2G:10.6Method2,Fig26and28 =p,! ^"p =򀀀Pass @+ 򀀀Fail E0!"p E3DProbesCriticalDimensions `pO$ v   0@160@`16 apPA   0@16 0@p aSensingheaddiameter(Dhead) @p/$ p @Dhead=򀀀inches Ap0! p ATheminimumrecommendeddiameterofthesensingheadis1inch,i.e.,@6Dhead1inch @p/$I$p @2F:6.1 =p,! %"p =Recommendationonly E0! '"p EInspectionofProbeHead =3$h( = Applicability: 0 Allprobes.) t. t.  Frequency: 0  (a)Beforeeachfieldtestand*t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(b)Beforeeachcalibration. bUyB+t.t. ? 0.20833333333 ?b17a&==% h[L, ? 0.20833333333 ? h#=%&=W#Hasthetesterperformedacarefulexaminationofthephysicalconditionoftheprobeheadandhave - therequiredmeasurementsandobservationsbeennotedontheformsanddiagramssimilartothoseinTable2G1(forTypeSprobes)or2F1(for3Dprobes)?Ifso,continuewithnextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. @3$0  @2F:8.1.2,10.2,Tbl.2F12G:8.1.2,8.1.3,10.2Tbl.2G1 NA28")? N򀀀Pass򀀀Fail J=29VV*? J17b&==% =0!k4: =#=%&=#Hasthetestercomparedtheresultsofthecurrentinspectiontothoserecordedinanearlierversion k4; ofTable2G1or2F1thatwasrequiredtobecompletedinconjunctionwiththemostrecentcalibration?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. =3$=  = % = % $ = $17c&==% =0!E> =#=%&=#IfthereisvisibledamagetotheprobeheadorifthefaceopeningsofaTypeSprobearenoticeably E? misaligned,hastheprobebeenremovedfromserviceuntilnecessaryrepairsaremade,dimensionalspecificationsverified,andtheproberecalibrated?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. 4*$TB  4  B  $ B $17d&==% =0!C =#=%&==#DoesTable2F1or2G1forthecurrentinspectionincludetheprobesuniqueIDnumberandhasthe D inspectionformbeensignedanddatedbytheappropriateparty?Ifnot,mark Fail.Iftheprovisionsinsteps17athrough17dhavebeensuccessfullysatisfied,mark Pass. 4*$e!.F  4  }FF  0 }FF 0ThermocoupleInspection =3$" G = Applicability: 0 Allprobes.%d t. t.  Frequency: 0  Beforeeachfieldtest. YL&t.t. ?0.25?Y18a _RC=| ?0.25 ? _Isthethermocoupleattachedtotheprobesothatthesensortipdoesnottouchanymetal? @3$> @Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. </$> < 9,!=|" 9 9,!=|  918b =0!U  =For3Dprobes,isthethermocouplelocatedontheoppositesideoftheprobeheadfromthepressureportssoasnottointerferewiththegasflowaroundtheprobehead? @3$  @Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. ]S$ V ffffff@6.6ffffff@]6.6 ZPBU" ffffff@6.6 ffffff@ Z򀀀Pass򀀀Fail 9,!U 918c =0! 0 =Isthepositionofthethermocouplerelativetotheprobespressureportopeningsinthesameconfigurationasusedwhentheprobewascalibratedinthewindtunnel?. @3$7v  @Ifnot,mark Fail.Ifso,mark Pass. <2$ 0 < 9/! 0" 9 E0! 0 EHorizontalStraightnessCheck D3$  D Applicability: 0 Allprobesusedtoperformhorizontaltraverses."  t. t.  Frequency: 0  (a)Beforeinitialfielduseforprobesconstructedofarigidsteelmaterialandconsistingofamainprobewithoutprobeextensions   unlessabendisvisible. t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(b)Beforecurrentfieldtestforanyprobeconsistingofprobeextensionsand,forprobesnotconsistingofextensions,wheneverabendisobservedduringthemandatorypretestvisualinspection. t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(c)Thischeckmustalsobeperformedwhenevertheprobeisrecalibratedandwheneverachangeismadetothedesignormaterialoftheprobeassembly. ud.o"t.t. ? 0.29166666667 ?u19a l[L# ? 0.29166666667 ? lWilltheprobebeusedtoperformahorizontaltraverseduringthisfieldtest? @/$ J' @򀀀Yes򀀀No A0!(" AIf yesischecked,gotoitem19b.If noischecked,mark Notapplicableandskiptheremainingstepsinthisprocedure. @3$I+  @8.2Fig.2F9Fig.2G6 NA2I." II[M  N򀀀Pass򀀀Fail / 򀀀Notapplicable I1  RA2 J2" ]]\M R19b RA2a3EEIE RWilltheprobebeusedwithoutprobeextensionsduringthisfieldtest? @/$$6 @򀀀Yes򀀀No A0!a7" AIf yesisalwayschecked,mark Passandskiptheremainingstepsinthisprocedure.If noischeckedforanyquestion,gotoitem19c. ND5$:(? N % <: %  <:  , : ,&==%Istheprobe ;z; constructedofarigidsteelmaterial?#=%&=B# @/$= @򀀀Yes򀀀No 1'!;z>" 1 % > % % > %  >  ,  > ,Duringthemandatorypretestvisualinspectionoftheprobe,wastheprobefreefromobservablebends? @/$M#C @򀀀Yes򀀀No 1'!E D" 1 %  D % %  D %   D  , 7 ,Wasasuccessfulhorizontalstraightness checkperformedbeforeitsinitialfielduseandmostrecentcalibration? @/$l @򀀀Yes򀀀No 1'!d" 1 % 7 % % 7 %  7  , ^ ,Hastheprobedesignandmaterialremainedunchangedsincethelasthorizontalstraightnesstest? @/$   @򀀀Yes򀀀No 1'! " 1 % ^  % % ^  %&==% , ^  ,19c RA2W xxZ R#=%&=^#(i)Wasthefully W  assembledprobeproperlysecured? @/$  @򀀀Yes򀀀No&==% A0!W " A#=%&=Ȳ#If yesisalwayschecked,gotoitem19d.If nois W  checkedforanyquestion,mark Failandskiptheremainingstepsinthisprocedure.&==% ND5 Z N %   % %   % ,   ,#=%&=#(ii)Wasanangle 1  measuringdeviceortrigonometry(seeFigure2F9or2G6)usedtodeterminethesagangle. @/$9 @򀀀Yes򀀀No&==% 1'!1 " 1 %   % %   % %   % , + ,#=%&=#(iii)Wastheprobe X rotatedandthesaganglemeasuredatseveralrotationalpositions? @/$` @򀀀Yes򀀀No&==% 1'!X " 1 % +  % % +  % ! +  !19d +!! +#=%&=#Maximumsag(SMAX) " anglemeasuredamongallrotationalpositions. * q:$ *SMAX=򀀀degrees&==% +!%" +#=%&=#Thesaganglesatallrotationalpositionsmustnot & exceed5degrees,i.e.,@9SMAX5 .$3) . % R) %0 R) 0RotationalPositionCheck D3$%d D Applicability: 0 Allmanuallyoperatedprobesexceptthoseinwhichtheyawanglemeasuringdeviceismounteddirectlyon referencescribe { line.  t. t.  Frequency: 0  (a)Beforestartofeachfieldtestforprobesnotemployingextension(s).>t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(b)Firsttimeaprobeextensionisaddediftheextensioncanbelockedintomechanicallyfixedrotationalposition. t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(c)Everytimeaprobeextensionisaddediftheextensioncannotbelockedintomechanicallyfixedrotationalposition. t.t. 0  0t.t.0|t.t.0|t.|t.0lt.t.0lt.lt.0\t.t.0\t.\t.(d)Beforeandaftereachfieldtestifextensionsremaininplacethroughoutfieldtest. ud.E t.t. UUUUUU? 0.33333333333 UUUUUU?u20a l[L  UUUUUU? 0.33333333333 UUUUUU? lWillthisprobebeusedwithoutextensionsandwilltheyawanglemeasuringdevicebemountedandaligneddirectlyontheprobespermanentreferencescribeline?Ifso,mark Notapplicableandskiptheremainingstepsinthisprocedure.Ifnot,mark Applicableandgotonextstep. @/$ ^   @8.3,8.3.5 6,!  " 6򀀀Applicable    򀀀Notapplicable 2! ^ 220b RA2u ] RPretestrotationalpositioncheck eT$u    @8.3 @e8.3 lbSu "^  @8.3  @ l򀀀Pass @+ 򀀀Fail 3)#u "^ 3 , g  ,Lookatthevaluesof[89#  `EI 77I 7 [,theanglemeasuringdevicerotationaloffset,appearinginthelastcolumnofTable2F2or2G2.Verifythattheyhavebeendeterminedtowithinthepretestspecification(e.g.,byhavingthetesterrepeattherotationalpositioncheckforoneormoreofthetableentries). D3$W DPretestspec   RADOshallbedeterminedtowithin1ateach   positionwheretheanglemeasuringdeviceismountedontheprobe,i.e.,@=[DE#  `ED)mmD)m [߈ 4*$  4  g   ( g  (20c A0!! ADoestheprobeconsistofextensionsthatwillnotberemovedthroughoutthefieldtest?Ifso,continuewiththisprocedure.Ifnot,skiptheremainingstepinthisprocedure. =3$o#  =8.3.4 <2#$"rrc <򀀀Pass @+ 򀀀Fail <2#%"rrc <20d C2#&c CPosttestrotationalpositioncheck 4*$'  4  a'   a'  % ' %Comparethevaluesof[JK#  `E 77 7 [߀appearinginthe Z( lastcolumnofTable2F2or2G2fortheposttestrotationalpositioncheckwiththecorrespondingvaluesobtainedinthepretestcheck.Dotheymeettheposttestspecification? = .$$- .Posttestspec Z. RADOobtainedintheposttestcheckmustbewithin / 2ofthecorrespondingvalueobtainedinthepretestcheck,i.e.,@=[NO#  `EDy5m5mDy5m [߈ .$$3 .  3 3 P    3 !C$E$H$eH$H$H$E$E$E$C$C$EC$C$E$H$|H$H$H$E$E$E$C$C$PC$*opdQd dd KHH KnHH nKHH KHH |HH |HH <dd <dd ~dd ~dd dd dd dd  dd @pA..o,**dd +  /  / !OtherEquipmentChecks#! X# C9&Ed"    C6,* *"     6*eIpLdd**dd **p..e, dd ,}dd ,dd ,ydd , dd ,wdd ,dd ,dd ,dd ,rdd +  + On +ID A0!" AParameters @/$" @Specifications =,!" =Cite =,!" =Outcome J5&"    JPressureMeasuringDevices"General ]S$ (   5@215@]21 \RC_~ EEf  5@21 5@ \Indicatetypeofdeviceused:@22e TypeofDevice B8&  BPurpose =3$_~" =Underallconditionselectronicmanometersarerecommended.Underlowflowconditions,electronicmanometersmaybenecessarytoobtainacceptablemeasurements. <2# <6.4.1 <2#_~"EE] <Recommendationonly <2#!@"ll < %  % (  (VelocityPressure @6$" @YawNulling 4*$" 4       %  % (   (Fluidmanometer @6$E d  @& @6$E d " @& 4*$E d " 4         %   % ( 7 V  (Electronicmanometer @6$  @& @6$ " @& 4*$ " 4  7 V    7 V   % 7 V  % (   (Mechanicalgauge(e.g.,Magnehelic) @6$ ! @& @6$  "" @& 4*$  #" 4   #    #  !  # ! 2! ($ 2Forelectronicmanometers sb$ (%  $ ? 0.41666666667 ?s22a l[L_~& ? 0.41666666667 ? lIndicatethetypeofdatadisplaydeviceused:&Panelmeter0 &Stripchart!@( ~ ~ &PC0  0y  ~ ~0 y ~y ~0i ~ ~0 i ~i ~0Y ~ ~0 Y ~Y ~&Other:򀀀 G=.) ~ ~ GElectronicmanometersmustincludeorbecoupledwith(i)adatadisplaydevicethatallowsthetestertoobservethemeasurementsduringtesting,and(ii)adatarecorderthathastheabilitytocomputeandretaintheappropriateaveragevalueateachtraversepoint,identifiedbytimeandtraversepointIfanelectronicmanometerisbeingusedandtheseconditionsaremet,mark Pass.Ifanelectronicmanometerisbeingusedandtheseconditionsarenotmet,mark Fail.Ifanelectronicmanometerisnotbeingused,mark NotApplicable. ]S#4uuo @6.5@]6.5 ]SD_~5"o @6.5 @ ]򀀀Pass򀀀Fail _~6 򀀀NotApplicable =3(8"mmo $ =22b +!9 +Indicatethetypeofdatacapturedeviceused:&Datalogger0 &PCwithdatacapture Ed; software  ~ ~ &Other:򀀀 %= % % >= % % >= % 0 >=  0PressureMeasuringDevices"Readability ]S$>   7@237@]23 cRCNm?o  7@23 7@ cUpperlimit(UL)ofmeasurementrangedisplayedondevice D3$B DUL=򀀀in.H2O =3$NmC =Differentialpressuredevicesmusthaveareadabilityof1percentoffullscale,i.e.,@7R0.01(UL) F Foraninclinedverticalmanometer,thespecificationshallbemetseparatelyoneachscale. <2#VuH//r <2F:3.5,3.13,6.4.12G:3.4,3.13,6.4.1 <2#O"r <򀀀Pass򀀀Fail <2#NmP"r < % P %Readability(R):ForAnalogdevices  R smallestscaledivisionFordigitaldevices G fU Decimalplacesdisplayed .$! W .R=򀀀in.H2O %?^X % % X % % X %0 X  0PressureMeasuringDevices"RangeChecks _N$%d   0_24a `O@{  0  `Dothemajorityofpressuremeasurementsfallbetween10%and90%ofthedevicefullscalerange? @/${ @6.4.1 =,!{" =Recommendation { only =,!=|" =24b A0! AIsthedevicecapableofmeasuringthemaximumexpectedpressuredifferential? @/$ @6.4.1 =,! " =򀀀Pass򀀀Fail&==% 6,! " 624c +!(  +#=%&=I#Ifthedeviceisusedforyawnulling,isitbidirectionalwithafullscalerangenogreaterthan1in. (  H2O,i.e.,from0.5in.H2Oto+0.5in.H2O?&==% *    *6.4.2 '(" '#=%&=#ԀPass򀀀Fail&==% 6!("  6#=%&=d#PressureMeasuringDevices"Zeroing&==% D3$ @  D #=%&=#Applicability: 0 AllpressuremeasuringdevicesusedinfieldorwindtunneltestingW  |. |.  Frequency: 0  (a)Beforeandaftereachfieldtest.Beforeeachwindtunneltest. X |.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(b)Morefrequentlyatthediscretionofthetester. np].  |.|.   9@259@n25 n]R1p  u  9@25 9@p nZeroreading(Z) A0!2  A  򀀀inches 1p  H2O =3$2  =Bothconditions(a)and(b)mustbemet.Ifnot,mark Fail.(a)Forfluidmanometerandmechanicalpressuregauges(e.g., 2  Magnehelicgauges):Thezeroreadingshallnotdeviatefrom   zerobymorethan0.03inchesH2Ooroneminorscale w  division,whicheverisgreater,i.e.,@:=Y:<# `E4  4 Y߈Forelectronicmanometers:Thezeroreadingshallnotdeviate A! fromzerobymorethan0.01inchesH2Oforfullscales2.0 B" in.H2Oorbymorethan0.03inchesH2OX XԀ#XX #forfullscales>2.0 # in.H2O,i.e., $ @:=Y|# `E6 '6 '6 'Y߈(b)Foralldevicesexceptthoseusedexclusivelyforyawnulling,thezeroreadingshallnotdifferfromzerobymorethan5%oftheaveragemeasureddifferentialpressureatanydistinctprocessconditionorloadlevel,i.e.,@:=YCF# `EY߈ Fp5&, F8.5,10.5.2,2F:10.6.72G:10.6.4 RpA24"RRup R򀀀Pass򀀀Fail RpA21p 5"up R 0&5p 0Averagemeasureddifferentialpressure(ADP)atadistinctprocessconditionorloadlevel. +!o= +  򀀀inches !`> H2O %"? % ,p ? , ;p*?p ;?*?p  ?PressureMeasuringDevicesUsedforYawNulling"ResponsivenessCheck YO$d   :@26:@Y26 KA2  :@26 :@ KWasthedevicecheckedforresponsivenesstorotationofprobepriortoeachuse? * | *Ifthecheckwasnotperformedorifthedevicewasnotresponsivetoproberotation,mark Fail.Ifthecheckwasperformedandthedevicewasresponsive,mark Pass. '7 '10.3.3.3 ' " '򀀀Pass򀀀Fail 6! "  6PressureMeasuringDevices"3pointcalibration D3$V   D Applicability: 0 Allpressuremeasuringdevicesusedinfieldtestingexceptthoseusedexclusivelyforyawnulling.Allpressuredevicesused   inwindtunneltesting,exceptprecisionmanometersthatmeetthespecificationsforareferencedevice(asdefinedinsection6.4.3ofMethods2Fand2G)andthatarenotusedforfieldtesting.  |. |.  Frequency: 0  (a)Beforeinitialfielduseofpressuremeasuringdevice.) |.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(b)Nolaterthan90daysafterthedevicesfirstfieldusefollowingitsmostrecentprevious3pointcalibration. |.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(c)Oneachdaythatprobecalibrationsareperformed. N=. v |.|.  N27a RA2 &} RWillthispressuremeasuringdevicebeusedexclusivelyforyawnulling? D3$  DIfeitheroftheseapply,skiptheremainingstepsinthisprocedure. Ifnot,continuewiththefollowing   step. RA2P mmu R10.3.3.3,10.8 RA2 "  *} R KA2 "+} K ,   ,Isthisdeviceaprecisionmanometerthatmeetsthespecificationsforareferencedevice(asdefinedin6.4.3ofMethods2Fand2G)andthatisnotusedforfieldtesting? =3$a* = %   % %   % ,   ,27b RA2rr: RDate(D0)ofmost   recent3pointcalibrationofdevice. D3$;" D򀀀/򀀀/򀀀 D3$#" DIfthefollowingconditionisnotmet,mark Failandskiptheremainingstepsinthisprocedure.Iftheconditionismet,continuewiththefollowingstepsinthisprocedure.@ZZ5DC󀄀D190days tc2J)< %@10.8%@t10.8 tcT*"rr= %@10.8 %@ t򀀀Pass򀀀Fail RpA2+"rr> R ;*-+p ;Date(D1)offirstfield Z, testafterdateD0. D3$S- D򀀀/򀀀/򀀀 4*$Z." 4 ,p -. , ;p*-.p ; ;p*-.p ; ;*E.p ;Date(DC)ofcurrent r/ fieldtest D3$k40 D򀀀/򀀀/򀀀 4*$r1" 4 ,p E1 , ;p*E1p ; ;*E1p ;27c RA22VVD RIsthereferencedeviceaprecisionmanometerorNISTtraceablepressuresource?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. D3$L4 D6.4.3 RA25"VVH R򀀀Pass򀀀Fail KA26"VVI K , u>6 ,Isthereferencedevicemaintainedunderlaboratoryorsimilarconditions(e.g.,climatecontrolledtrailer)andnotusedinfieldtests?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. =3$d8 = % u>8 % % u>8 % , V8 ,Ifaprecisionmanometerisused,arethefollowingconditionsmet?0  0$$0$$Scalegradations0)$$0)$)$0$$01$$01$1$ManufacturersDocumentedAccuracy|:$$ 0.01in.H2Oorlessin0to2in.H2Orange0 1 01$1$Atleast0.5%offullscaleu >;$$ 0.1in.H2Oorlessin2to10in.H2Orange 7!< Ifaprecisionmanometerisusedthatdoesnotmeetthesespecifications,mark Failandskiptheremainingstepsinthisprocedure. =3$" > = % V> % % V> % ,  ,IfaNISTtraceablepressuresourceisused,isthedateofitsmostrecentrecertificationwithinayear ofthecurrent3pointcalibration?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. =3$& = %  % (  (27d A0!=| AWasanyadjustment,otherthanadjustmentstothezerosetting,madetothedevicebeingcalibratedsincetheitsmostrecent3pointcalibration.Ifyes,mark Failandskiptheremainingstepsinthisprocedure. bQ$ %@10.8%@b10.8 _NC=|" %@10.8 %@ _򀀀Pass򀀀Fail ZP!=|"  ;@27;@Z27e cRC V V  ;@27 ;@ cUpperlimit(UL)ofmeasurementrangeofdevicebeingcalibrated. D3$]   DUL=򀀀in.H2O =3$ V =Thepressuresshallagreetowithin2%ofthefullscaleofthedevicebeingcalibratedor0.02in.H2O,   whicheverislessrestrictive,i.e.,@=Y M# `EF BBF BY߈ThespecificationmustalsobemetforYPQ# `E  YandYRS# `EKKY.Note:Forinclinedverticalmanometers,separatechecksmustbeperformedontheinclinedandverticalportionsofthemeasurementscale. <2#0G <10.3.3.110.3.3.2 <2# "  X <򀀀Pass򀀀Fail 3)# V"Y 3 % K  %Readingsofreferencedevice(R30,R60,R90) q ! andcalibrateddevice(C30,C60,C90)at 4 # referencepressuresof30,60,and90%ofUL. .$;z& .R30,R60,R90=  ' 򀀀,򀀀,򀀀in.H2O q ( C30,C60,C90= 4 * 򀀀,򀀀,򀀀in.H2O % + % % K + % % K + % 0 K +  0PressureMeasuringDevices"1pointcalibration D3$,  D Applicability: 0 Allpressuremeasuringdevicesusedinfieldtesting.&- |. |.  Frequency: 0  (a)Aftercompletionofeachfieldtest..|.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(b)Morefrequently(e.g.,afteroneormorefieldtestruns)atthediscretionofthetester. J9.k/|.|.  J28a A0!0 AWasa1pointcalibrationperformedonthedevicebeforeitwasusedforanotherfieldtest?Ifnot,mark Failandskiptheremainingstepsinthisprocedure. D3$2 D10.8.1 N=23"n N򀀀Pass򀀀Fail =,!4" =28b A0!5 AWasthe1pointcalibrationperformedbeforeleavingthefieldtestsite? =3$6 = ( u6 (RecommendationOnly A0!8" A28c RA209EEj RReferencedeviceusedtocalibratefielddevice =3$0:  = % ": %IsthereferencedeviceaprecisionmanometerorNISTtraceablepressuresourcemeetingtherequirementsforperforminga3pointcalibration?Ifso,mark Passandskiptoitem28d.Ifnot,continueonnextrowof28c. 5$ = 56.4.3,6.4.4 RA2 H?" z R򀀀Pass򀀀Fail KA2G@" VVo K ,  @ ,IsthereferencedeviceapressuremeasuringdeviceorpressuresourcewithadocumentedcalibrationtraceabletoNIST,oranequivalentdevicethathasbeenpreviouslyapprovedbytheAdministrator?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continueonnextrow. =3$g#D = %  D % %  D % , 7 ,Ifapressuremeasuringdeviceisused,doesithaveareadabilityequivalenttoorgreaterthanthetesteddevice?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,mark Pass andskiptoitem28d. =3$ = % 7 % % 7 % ,  ,IfaNISTtraceablepressuresourceisused,(a)Isthedateofitsmostrecentrecertificationwithinayearofthecurrent1pointcalibration?(b)Isthegeneratedpressureknowntowithin1%ofthefullscaleofthedevicebeingcalibrated?Iftheanswertoeitherofthesequestionsis No,mark Failandskiptheremainingstepsinthisprocedure. =3$}F = %  % %  %28d C2#  rr CWasanyadjustment,otherthanadjustmentstothezerosetting,madetothedevicebeingcalibratedsincetheitsmostrecent3pointcalibration.Ifyes,mark Failandskiptheremainingstepsinthisprocedure. [Q$W  %@10.8%@[10.8 I?4  " %@10.8 %@ I򀀀Pass򀀀Fail 2p! " 2 ;*I  p ;Upperlimit(UL)ofmeasurementrangeofdevicebeingcalibrated. D3$  DUL=򀀀in.H2O =3$ v  =Bothofthefollowingconditionsmustbemet.Ifnot,mark Fail.Ifbothconditionsaresatisfied,mark Pass.(a)Thereferencepressuremustbebetween50and90%ofthefullscalerangeofthedevicebeingcalibrated,i.e.,@..=[TU# `EFllFl[߈(b)Thepressuresshallagreetowithin3%ofthefullscaleofthedevicebeingcalibratedor0.03in.H2O,whicheverislessrestrictive,i.e.,  @=[VW# `EFJJFJ[@@; ?2#I"m ?6.4.4,10.8.1,10.8.2 NA21 %"mm N򀀀Pass򀀀Fail RpA2 v &" R 4*B &p 4Readingsofreferencedevice(R)and h1( calibrateddevice(C). .$*) .R=򀀀in.H2O o* C=򀀀in._ X4X H2O#X XXX4(8##XX G8# .$*, . % B , % % B , % 0 B ,  0DigitalInclinometers D3$h-  D Applicability: 0 Formeasuringtheyawangleofflowusingamanualprobetoperformahorizontaltraverse . ofastackorduct.Attestersdiscretionaprotractorwheelandpointerdevicemaybeusedinsteadofadigitalinclinometer(seeitem#30below).AnalogandotheryawanglemeasuringdevicesmayonlybeusedifapprovedbytheAdministrator(seeitem#31below). J9.2 $ $ J8.9.1 =,!3" = A0!4 A29a RA2%d RReadability:Whatis %d smallestreadableangularincrement(R)displayed? D3$k DR=򀀀degree(s) D3$%d DBothofthefollowingconditionsmustbemet.Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure.(a)Digitalinclinometermustbecapableofdisplayingtherotationalpositionoftheprobetowithin1degree,i.e.,@9R1. s   (b)Digitalinclinometermustbecapableofmeasuringanglestowithin1degree,i.e.,@9A1.@@= RA2{  R KA2%d" K򀀀Pass򀀀Fail Cp2#%d"VV C ;*p ;Accuracy:Whatis : manufacturersdocumentedaccuracy(A)ofthedevice? D3$A  DA=򀀀degree(s) 4*$: 4 %  % %  % %  %29b C2#   CHasthedigitalinclinometerbeencalibratedaccordingtothemanufacturerscalibrationproceduresandaccordingtosection10.3.4ofMethod2For2G?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$U  =10.3.4Fig.2F12Fig.2G9 <2#V !" < ,p m ! , 4*G !p 4Calibration:Record  " anglesofinclination(R1andR2)measured /n$ onsidesAandBofatriangularblockwithknownangle. .$u' .R1=򀀀degree(s)  ( R2=򀀀degree(s) m ) =򀀀degree(s) * /n* *Thedifferencebetweenthesumofthetworeadingsfrom180shallbewithin2oftheknownangle, m , i.e.,@=YXY# `EFFY߈Ifthisconditionissatisfied,mark Pass.Ifnot,mark Fail. 2p!u0 2 4*G 0p 4 0 G 0  0ProtractorWheelandPointerDevice D3$ 1  D Applicability: 0 (a)Formeasuringyawangleofflowwhenusingamanualprobetoperformaverticaltraverseofahorizontalduct(i.e.,a !`2 whenmeasuringfromontoporintothebottomofahorizontalduct).Seesection8.9.1ofMethods2Fand2G.  |. |. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.0L |.|.0 L |.L |.(b)Asanalternativetousingadigitalinclinometertomeasuretheyawangleofflow. N=.4 |. |.  N30a RA2:5 RDiameter(D)ofmeasurementringonfaceofprotractorwheel. D3$A9 DD=򀀀inches D3$:: DBothofthefollowingconditionsmustbemet.Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure.(a)Themeasurementringonthefaceoftheprotractorwheelmustbenolessthan7inchesindiameter,i.e.,@7D7inches A (b)Themeasurementringontheprotractorwheelmustindicateanglestoaresolutionof1,i.e.,@9RW1@@= RA2 D R6.2.2.1 KA2:E"  K򀀀Pass򀀀Fail Cp2##RR"   C ;*Rp ;Readability:Whatis NS smallestreadableangularincrement(RW)displayedonthe U V protractorwheel? D3$!VW DRW=򀀀degree(s) 4*$NX 4 % X % ,p X , 3)Xp 3 A0!m"Y ADoesthecollarofthepointerassemblyhaveascribelinethatcorrespondstothepositionofthepointerneedleandthatcanbealignedwiththescribelineontheprobesheath?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. <2$#0 \ < Ap0!m"]" A 3) "H]p 330b A0!G%!^ AIsthepointerneedleofsufficientlength,rigidityandsharpnesstomeetthefollowingreadabilityspecification: <2$ &H"` <6.2.2.2 Ap0!G%!a" A :)$"!ap : A0!d AReadability:Whatis d smallestangularincrement(RN)that  canbedeterminedusingthepointer? D3$l DRN=򀀀degree(s) @/$d @Thepointermustallowthetestertodeterminetheprobesangularpositiontowithin1fromthemarkingsontheprotractorwheel,i.e.,@:RN1@@=   Ifnot,mark Failandskiptheremainingsteps. @/!l  @ Ap0!d " A 4*7 p 430c C2#EE CAftermeasurementsaretakenatthelasttraversepointaccessedfromeachtestport,didthetesterperformaverificationthattherotationalorientationoftheprotractorwheelhadnotchangedduringthetraverse?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewitheitheritems(i)or(ii)below. =3$?  =18.2.8 Cp2#"EE C ;p*^p ; ;*1 p ;(i)Forportsonverticalstacksorductsandportsonthesideofhorizontalducts:Wasadigital  ^ inclinometerusedfortheverification?Ifnot,mark Fail.Ifso,continuewiththisprocedure. 4*$W  4 ,p 1  , ;p*1 p ; ;*I  p ;Angle()readingof  v  inclinometerwhenalignedwith0markonprotractorwheel. D3$  D=򀀀degree(s) @/$ v  @Iftheobservedangleatanyportexceeds2of0,mark Fail.Iftheobservedanglesatallportsarewithin2of0,mark Pass,i.e.,@=YZ[# `EFFY߈ Ap0!  A ;p*I  p ; ;p*I  p ; ;* p ;(ii)Forportsonthetoporbottomofhorizontalducts:Wasapermanentmarkplacedontheduct I beforethestartofthetraverse,and,wasavisualinspectionperformedafterthecompletionofthetraversetoconfirmthatthe0markontheprotractorwasinproperalignmentwiththepermanent0markontheduct?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. Dp3$Q# D ;p* #p ; ;p* #p ; 4*C #p 4Readingonprotractor(R)wheelcorrespondingto0markontheduct. .$' .R=򀀀degree(s) * p( *Iftheobservedangleatanyportexceeds2of0,mark Fail.Iftheobservedanglesatallportsarewithin2of0,mark Pass,i.e.,@=Y\]# `EFFY߈ 2p!, 2 ;p*C ,p ; ?*C ,p  ?OtherYawAngleMeasuringDevices ]S$C -   ?@31?@]31 cRCb.  ?@31 ?@ cWasdeviceapprovedforusebytheEPAAdministrator? @/$1 @ @/!b2" @Yes =,!b3" = @/!b4" @No :0!b5" :Otheryawanglemeasuringdevicesmayonlybeusedif(i)approvedbytheAdministrator,and(ii)theyhaveamanufacturersspecifiedprecisionof1orbetter.Ifanalternativeyawanglemeasuringdeviceisbeingusedandbothoftheseconditionsaremet,mark Pass.Ifeitherconditionisnotmet,mark Fail.Ifanalternativeyawanglemeasuringdeviceisnotbeingused,mark NotApplicable. Cp2#k 4? C6.2.3 RpA2b@"p R򀀀Pass򀀀Fail bA 򀀀Notapplicable KA2C"mmp K % IC %Entermanufacturersspecifiedprecision. .$o8E . 1'vF" 1degrees 4*$vG 4 ,p IG , ;p*IGp ;?*IGp  ?TemperatureGauges @/$%d  @32a A0!{ AIsthegaugecapableofmeasuringtemperatureswithin5Fofthestackorducttemperature?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. aP$=| ffffff@6.6ffffff@a6.6 [QB{" ffffff@6.6 ffffff@ [򀀀Pass򀀀Fail <2#{"99 <32b C2#EE CWasthegaugecalibratednomorethan30dayspriortothestartofthecurrentfieldtestortheseriesoffieldteststhatincludethecurrentfieldtest?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$ V  =Methods2F,2G:10.9Method2:4.3 Cp2#] " C ;p*/np ; ;* Hp ;Willthegaugeberecalibratednomorethan30daysaftercompletionofthecurrentfieldtestortheseriesoffieldteststhatincludethecurrentfieldtest?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$ 0 = ,p  H , ;p* Hp ; ;* " p ;Werethefollowingspecificationsmetwhenthecalibrationwasperformed? =3$G  = ,p  "  , ;p* " p ; ;*9x p ;Absolutetemperature(TG)fromgaugebeing _  calibrated D3$!`  DЀTG=򀀀F+460 =3$  =Theabsolutetemperaturemeasuredbythegaugebeingcalibratedandthereferencegaugemustagreewithin1.5%,i.e.,@##=[>?# `EFF[߈ <2# // < ,p 9x  , ;p*9x p ; 4*R p 4Absolutetemperature(TR)fromreference 9x gaugeorstandard .$:  .TR=򀀀F+460 %w ! % % R ! % ,p R ! , ?*R !p  ?Barometer @/$Q"  @33a A0!# AWasthebarometricpressuregaugecapableofmeasuringatmosphericpressuretowithin0.1inchHg?Ifnot,mark Failandskipremainingstepsinthisprocedure.Ifso,continuewithprocedure. Dp3$i% DMethods2F,2G:6.8,10.10Method2:2.5,4.4 RpA24-"p R򀀀Pass򀀀Fail RA2."99p R33b RA2/VV RIfabarometricpressurereadingwasobtainedfromanearbyNationalWeatherServicestation,wasanadjustmentmadeforelevationdifferencesbetweentheweatherstationandthesamplingpoint?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. 4*$C2 4 ,p [2 , 4*[2p 4 , 5t2 ,Elevation(ES)at 3 samplingpoint D3$[4 DES=0 R 򀀀feetabove 5 sealevel N=.[6R~R~ NIftherewasanelevationdifferencebetweentheweatherstationandthesamplingpointthefollowingrelationshipshouldhold:@=Y`a# `EFFY߈Ifthereisanelevationdifferenceandthisconditionisnotmet,mark Fail.Ifthisconditionissatisfiedorifthereisnoelevationdifferencebetweentheweatherstationandsamplingpoint,mark Pass. B82 ?xx B ,p 5t? , 4*5t?p 4 , ? ,Elevation(EW)at P@ weatherstation D3$A DEW=0 R 򀀀feetabove PB sealevel >4.CR~R~ > % C % ,p C , 4*Cp 4 , %dC ,Adjustment(A)madetoNWSbarometricpressurereading D3$ !LF DA=0  򀀀in.Hg >4.G~~ > % %dG % ,p %dG , 0&%dGp 033c +!c"H +Ifamercury,aneroid,orotherbarometerwasusedatthesamplinglocation,wasitcalibratedagainstamercurybarometernomorethan30dayspriortothestartofthecurrentfieldtestortheseriesoffieldteststhatincludethecurrentfieldtest?Ifnot,mark Fail.Ifso,mark Pass 5p$#& K 5 ;p*!>Kp ;+!!>K S p +  $!K *pd Td dd }dd }dd ydd y dd wdd wdd dd dd rdd rIpL..,**dd +  /  / !FieldTestPerformance#! f# C9&Ed"    C6,* *"     6*ep=dd**dd **p..e, dd ,)dd ,dd ,dd ,'dd +  + On +ID =,!" =Parameters =,!" =Specifications =,!" =Cite =,!" =Outcome6,*"   6eC$E$H$\H$H$\H$E$E$\E$C$C$[\C$|C$E$H$ H$H$ H$E$E$ E$C$C$f C$*pdd dd )dd )dd dd 'dd 'p=.., dd ,dd ,dd ,dd ,Edd ,dd ,dd ,dd ,dd ,dd ,dd ,'dd +  .   .TraversePointVerification D3$ (  D Applicability: 0 Allprobes._~  |. |.  Frequency: 0  Beforeeachfieldtest. N=.!@ |.|.  N34a I82w VV# IWasthestackdiameterobtainedbyphysicallymeasuringthestackorductdimensionsorbyusingacalibratedlasermeasuringdevice,ratherthanfromengineeringdrawings.Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,recordthestackdiameterandcontinuewiththisprocedure.(Diameter=򀀀inches) UK   333333!@8.6 333333!@U8.6 ]SDw"  333333!@8.6 333333!@  ]򀀀Pass򀀀Fail 3)#w  3 ,   ,Ateachstackport,weretheprobelengthsnecessarytoreacheachtraversepointcalculatedandrecorded,takingintoaccountthedimensionsofanyexteriorportflangeandinteriorportnipple?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$   = %   %     ,   ,Ifamanualprobeisused,aretheprobelengthsneededtoreacheachtraversepointmarkeddirectlyontheprobesheath?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$q  = %   %     , c ,Priortothestartoftestingareoutofstackmeasurementsmadeofthemarkingsonamanualprobeortheflangetoimpactportdistancesforanautomatedprobetoverifytheaccuracyoftraversepointpositionsfortheprobe.Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$ ,  = % c % % c %34b ?5#c11F ?Enterthevaluesindicatedbelow.Ifanyvalueincolumn(vi)isgreaterthan1/4inch,mark Fail.Ifallvaluesincolumn(vi)donotexceed1/4inch,mark Pass. =3$%D  = %  %    ! 6 !Port/TraversePointID(e.g.,A1,A2) .$!" .TraversePointLocationsfromTestMethod1 @6$%" @Adjustmentsduetoportflangeandnipples <2$)" <ResultingCalculatedProbeLengths =3!," =Measuredprobelengths <2$=\." <Calculatedvs.Measuredprobelengths|col(v)col(iv)| :0!2" : % 62 %  62  ! 2 !(i) +!63" +(ii) .$64" .(iii) * 65" *(iv) +!66" +(v) * 67" *(vi) +!68" + % 8 %  8  !  (8 !򀀀 +!m9" +򀀀inches .$m:" .򀀀inches * m;" *򀀀inches +!m<" +򀀀inches * m=" *򀀀inches +!m>" + %  (> %   (>  ! _~> !򀀀 +!?" +򀀀inches .$@" .򀀀inches * A" *򀀀inches +!B" +򀀀inches * C" *򀀀inches +!D" + % _~D %  _~D  ! D !򀀀 +!8E" +򀀀inches .$8F" .򀀀inches * 8G" *򀀀inches +!8H" +򀀀inches * 8I" *򀀀inches +!8J" + % J %  J  !  *J ! +!o K" + .$o L" . * o M" * +!o N" + * o O" * +!o P" + %  *P %0  *P  0Gasdensityandmoisturedetermination @/$d  @35a A0!% AEnterIDnumberofEPAtestmethodusedtodeterminethedrymolecularweightofthestackgas. D3$- DMethod򀀀 =3$%" =Method3or3Ashallbeusedtodeterminethedrymolecularweightofthestackgas.Method4shallbeusedformoisturecontentdeterminationandcomputationofwetmolecularweight.OthermethodsmaybeusedonlyifapprovedbytheAdministrator.Iftheserequirementsaremet,mark Pass.Ifnot,mark Fail. `V&5  @6.9@`6.9 ]SD%"H @6.9 @ ]򀀀Pass򀀀Fail 8.#%I 835b +! +EnterIDnumberofEPAtestmethodusedtodeterminethewetmolecularweightandmoistureofthestackgas. .$M  .Method򀀀 .$" . %  % %  % 0   0LeakChecks D3$ 8   D Applicability: 0 Allprobesandpressuremeasuringdevicesusedinfieldorwindtunneltesting  |. |.  Frequency: 0  (a)Beforeandaftereachfieldandwindtunneltest.P |.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(b)Morefrequentlyatthediscretionofthetester. g].}|.|.   B@36B@g36 cRCh VVV  B@36 B@ cUpperlimit(UL)ofpressuremeasurementdevice. D3$W# D  UL=򀀀in.H2O =3$h$ =Allofthefollowingconditionsmustbemet.Ifnot,mark Fail.(a)Theinitialpressuremustbeatleast3in.ofX XH2O#XX J#Ԁorapressuringcorrespondingto ( approximately75%ofthepressuremeasuringdevicesmeasurementscale,whicheverisless,i.e.,@>LY# `E~X X ~X Y߈(b)Thepressureshallremainstabletowithin0.10inchesX XH2O#XX ݮ#,i.e., M0 @oo>LY# `E77Y߈(c)Theleakcheckshallbeperformedforatleast15seconds,i.e.,@  >LY# `E}}Y߈ Fp5&y4?? F8.4,10.3.2 RpA2*6"p R򀀀Pass򀀀Fail KA2h7"VVp K , C7 ,Initialpressure(IP)duringleakcheck.. D3$i9 D  IP=򀀀inchesH2O =3$: =  C:   C:  % C: % , : ,Finalpressure(FP)readingduringleakcheck.. D3$j= D  FP=򀀀inchesH2O =3$Q> =  >   >  % > % % ,> %Elapsedtime(T)betweeninitialandfinalpressurereading. .$A .  T=򀀀seconds .$%B . ,p ,B , ;p*,Bp ;?*,Bp  ?ZeroingPressureMeasuringDevices&==% D3$Ed  D #=%&=#Applicability: 0 Allpressuremeasuringdevicesusedinfieldorwindtunneltesting,includingdevicesusedforyawnulling |. |.  Frequency: 0  (a)Beforeandaftereachfieldtest.Beforeeachwindtunneltest.]||.|. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.(b)Morefrequentlyatthediscretionofthetester. g].>|.|.   B@37B@g37 cRCu  B@37 B@ cZeroreading(Z) D3$u DZ=򀀀inchesH2O =3$u =Bothconditions(a)and(b)mustbemet.Ifnot,mark Fail.(a)Forfluidmanometerandmechanicalpressure   gauges(e.g.,Magnehelicgauges):Thezero }  readingshallnotdeviatefromzerobymorethan0.03inchesX XH2O#XX #Ԁoroneminorscaledivision,   whicheverisgreater,i.e.,@>LY# `E     Y߈Electronicmanometers:Thezeroreadingshall    notdeviatefromzerobymorethan0.01inchesX XH2O#XX y#Ԁforfullscales2.0inX XH2O#XX #orbymorethan s 0.03inchesX XH2O#XX g#forfullscales>2.0in.H2O, Yx i.e.,@>LY# `E6 '6 '6 'Y߈(b)Foralldevicesexceptthoseusedexclusivelyforyawnulling,thezeroreadingshallnotdifferfromzerobymorethan5%oftheaveragemeasureddifferentialpressureatanydistinctprocessconditionorloadlevel,i.e.,@>LY#  `E{  {  Y߈ Fp5&Wv#   F2F,2G:8.5,10.5.2,2F:10.6.72G:10.6.4 RpA2 *"p R򀀀Pass򀀀Fail KA2u+"p K % -L+ %Averagemeasureddifferentialpressure Sr- (PAVG)atadistinct 4. processconditionorloadlevel. .$0 .PAVG=򀀀inches 1 _ X4X H2O#X XXX4##XX -# .$Sr2 . ,p -L2 , ;p*-L2p ;&==% ?*-L2p  ?#=%&=6#SystemResponseTime @/$3  @38a A0!"4 AWassystemresponsetimedeterminedfora coldprobebeforethestartofthefieldtest?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththenextstep. @6$6  @8.8,8.9.2 RpA28"ZZ R򀀀Pass򀀀Fail N=2"9"99p N38b A0!:: AEnterthetimeintervalbetweenmeasurementsusedtodeterminetheresponsetime. D3$#"B!? D C2$:@" Cseconds A0!:A" ADifferentialpressure(P)andtemperature :B measurementsmustberecordedevery15seconds.Ifthiswasnotdone,mark Failandskiptheremainingstepsinthisprocedure. 4*$a! E 4  E  , E ,38c RA2drr REntertheelapsedtime(ETp)requiredto &  reachstabledifferentialpressure  (P)reading D3$l D C2$d" Cseconds A0!d" ATheresponsetimeisthelongerofthetimesrequiredtoreachastabledifferentialpressure &  (P)ortemperaturereading,i.e., S  @>L[z{#! `E555![߈Ifthisconditiondoesnothold,mark Failandskiptheremainingstepsinthisprocedure.Ifthisconditionismet,continuewiththenextstep. E;5c  E  k  % k % , ^ ,Entertheelapsedtime(ETt)requiredto  reachstabletemperaturereading D3$s  D C2$-" Cseconds :0!-" :  ^   ^  % ^ % , e  ,Enterresponsetime(RT)recordedbythetester. D3$M  D C2$ ^" Cseconds :0! ^" : ,p e  , ;p*e p ; 0&e p 038d +! W  +Enterminimumtime(MinT)elapsedatfirstpointtraversedinanyport .$ # . -# W $" -seconds :0! W %" :Atthestartoftestingineachportandanytimeaprobeisremovedfromthefluegasstream,thetestermustallowatleasttheresponsetimetoelapsebeforetakingmeasurementsatthefirsttraversepointaccessedfromtheport,i.e.,@:LMinTRT !+ Ifconditionmet,mark Pass.Ifnot,mark Fail. 5p$N, 5 ;p*^ ,p ; ?*^ ,p  ?Sampling&==% D3$9-  D#=%&=#39a RA2.VV RAlignmentcheckformanuallyoperatedprobes D3$/  D8.9.6 RA20"VV R򀀀Pass򀀀Fail KA21"VV K , 1 ,Ateachtraversepointwasthealignmentoftheyawanglemeasuringdevicecheckedaftertakingmeasurementsatthattraversepoint? D3$i4 DIfnot,mark Fail,andskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. =3$i7 = % 7 %  7  , [7 ,Didthealignmentcheckateverytraversepointshowthattheyawanglemeasuringdevicemaintainedproperalignmentwiththereferencescribelineorwiththerotationoffsetpositionestablishedintherotationalpositioncheck? D3$2< DIfso,mark Passandskiptheremainingstepinthisprocedure.Iftheyawanglemeasuringdevicewasnotmaintainedinproperalignmentatanytraversepoint,continuewiththenextstepinthisprocedure. =3$2A = % [A % % [A % , $A ,Atanytraversepoint,wheretheanglemeasuringdevicewasnotinproperalignment,wasthedevicebroughtbackintoproperalignmentandthedifferentialpressuremeasurementsatthetraversepointrepeated? D3$ %F DIfso,mark Pass.Ifnot,mark Fail. =3$G = % $G % , $G ,39b RA2!{H RProbeorientationcheckforTypeSprobesusedwithMethod2G D3$!{I  D8.9.3.1,8.9.5,10.6.10 RA2j# L"mm R򀀀Pass򀀀Fail KA2!{M" K , " M ,Wasthecalibratedlegfacingintotheflowwhenpressuremeasurementsweretaken? D3$$!O DIfso,mark Pass.Ifnot,mark Fail. =3$S# P = % " P % ( " P (39c A0!Ed AIfahorizontaltraversewasperformedwithprobeslongerthan10feet,wastheprobesecuredina horizontalposition(e.g.,byuseofprobestands,monorails,orbushingsleeve)?Ifnot,mark Fail. aP$&  333333@6.3333333@a6.3 ^MBEd" 333333@6.3 333333@ ^򀀀Pass򀀀Fail 6,!Ed" 639d +!]| +Wasavisualcheckmadeoftheprobeshorizontalstabilitypriortoeachreading?Wastheprobeshorizontalstabilityverifiedperiodicallyusingacarpentersleveloranglemeasuringdevice? * >  *9.1.2 ']| " 'RecommendationOnly&==% 6!> "  6#=%&=#VelocityCalibrationUsabilityCheck D3$u   D Applicability: 0 AnytimeafieldtestisperformedusingMethod2Fand2G,pretestchecksshouldbemadetoverifythatthecalibrationis   validandcurrent.Aposttestcheckmustbemadetoconfirmthatthecalibrationscoefficient(s)and/orcurveswerederivedatwindtunnelvelocitiesthatarecompatiblewiththevelocityencounteredinthefield  |. |.  Frequency: 0  Items40aand40bshouldbeperformedpriortothestartofeachfieldtestanditem40catthecompletionofafieldtest. J9. 0|.|.  J40a A0!g  AWeretheprobescalibrationcoefficient(s)and/orcurvesobtainedthroughawindtunneltestperformedinaccordancewithsection10ofMethod2For2G?(Defaultcoefficientsmaynotbeused.) @/$   @6.1.1 =,!g " =򀀀Pass򀀀Fail A0!g " A40b RA2A `  RTime(T)elapsedsincefirstfielduseofprobeaftermostrecentcalibration D3$ DT=򀀀months D3$A `  DIfBOTHofthefollowingconditionsaretrue,mark Fail.Thecalibrationisnolongervalid.Ifeitherconditionisnotmet,mark Pass.T>12monthsN>10fieldtests wf5 *" ffffff%@10.7ffffff%@w10.7 tcTA ` #" ffffff%@10.7 ffffff%@ t򀀀Pass򀀀Fail KA2A ` $" K , y$ ,Number(N)offieldtestsperformedsincemostrecentcalibration D3$#B( DN=򀀀 Dp3$) D ;p*y)p ; ;p*y)p ;3&y)p 3 A0!d AVerificationthattheprobecalibrationwasperformedatwindtunnelvelocitysettingsappropriateforthevelocityencounteredinthefieldtest <2$&  < A0!| AAverageaxialvelocity(va(avg))obtainedusing > equationEq.2F9orEq.2G8. D3$- Dva(avg)=򀀀ft/sec =3$|  = Method2F  |  Case1:Ifva(avg)<20 >  ft/sec,Method2Fmaynotbeused.̀Ifva(avg)20ft/sec: F Case2a:The s  calibrationsareusableforanyvalueofva(avg),if   bothofthefollowingconditionsaretrue:55ft/secL65ft/sec =  85ft/secH95ft/sec   Case2b:Ifthe   conditionsinCase2aarenotsatisfied,thecalibrationsareonlyusableifva(avg),H. ?5&  ? Method2G  | Thecalibrationisusableifeitherofthefollowingapply.Case1: F" ЀL!5va(avg),H+5 s # Case2:va(avg)30  % ft/secandbothofthe  N & followingconditionsaretrue:55ft/secL65ft/sec  ) 85ft/secH95 V * ft/sec aW& +! (@12.4(@a12.4 ^TE|,"rr (@12.4 (@ ^򀀀Pass򀀀Fail ;1#|-"rr ;40c A0! z. ALowerwindtunnelvelocitysetting(L)usedwhencalibratingprobe D3$+ 2 DL=򀀀ft/sec =3$ z3 =   3  ,p  3 , ;p* 3p ; 3) 3p 3 :0!x 4 :Higherwindtunnelvelocitysetting(H)usedwhencalibratingprobe .$)8 .H=򀀀ft/sec .$x 9 .   9  ,p  9 , ;p* 9p ; ?* 9p  ?YawAngleCalibrationUsabilityCheck(Method2Gonly) D3$v:  D Applicability: 0 (1)OnlyappliestoMethod2G7; |. |. 0  0|.|.0||.|.0||.||.0l|.|.0l|.l|.0\|.|.0\|.\|.0L |.|.0 L |.L |.(1)Onlyapplieswhenusingadetachableprobeheadwhichiscoupledtotheprobesheath.  |. |.  Frequency: 0  Shouldbecheckedpriortothestartofeachfieldtestandobservedthroughoutafieldtest. cY.P=|.|.   D@41D@c41 KA2>  D@41 D@ KWastheprobeheaduncoupledorreorientedsincethemostrecentyawanglecalibrationinthewindtunnel? .$*A .Oncethedetachableprobeheadisuncoupledorreoriented,theyawanglecalibrationoftheprobeisnolongervalid.Iftheprobeheadhasbeenuncoupledorreoriented,mark Fail.Ifnot,mark Pass. 1p pG 16.1.8 =p,!H"p =򀀀Pass򀀀Fail&==%1'%I" 5 p 1  bI  C$E$H$\ H$H$\ H$E$E$\ E$C$C$q\ C$ C$E$H$H$H$H$E$E$$E$C$C$|C$#=%&=#*6pd 6d dd dd dd dd Edd Edd dd dd dd dd dd 'dd 'p..6,**dd +  /  / !WallEffects(Method2H)Checks#! #Ԁ C9&Ed"    C6,* *"     6&==%*epdd**dd **p..e, dd ,Fdd ,dd ,dd ,dd ,jdd ,dd ,dd ,dd ,dd ,{dd ,dd ,dd ,dd ,dd ,0dd ,dd +  + On +ID A0!" AParameters D3$" D @ Specifications @/$" @Cite A0!" AOutcome M8)"   M#=%&=#SitePrerequisites ]S$8  E@42E@]42 cRCo rr  E@42 E@ cWherewillmeasurementsbemade? D3$  D򀀀VerticalStack o  򀀀HorizontalDuct 1P 򀀀VerticalDuct  򀀀Other:򀀀 D3$ DMethod2Hisonlyapplicabletocircularstacksorducts.If circleisselected,gotonextitem.Ifanyotheroptionischosen,mark Failandstop.Method2Hcannotbeused. ve59 X * ?1.1?v1.1 spbSo"f ?1.1 ? s򀀀Pass򀀀Fail ND5o"rrp N ,   ,Whatisthegeometricalshapeofthestackorductatthemeasurementplane? D3$ 2  D򀀀Circle  *  򀀀Ellipse   򀀀Rectangleorsquare   򀀀Other:򀀀 =3$Q p ! = ,p  ! , +! !p + %  ! % % $ ! %Whatisdiameter(D)ofthestackorduct? .$+J# .D=򀀀feet .$i $ .Method2Hisapplicabletostacksandductswhosediameterisgreaterthanorequalto3.3feet,i.e.,@8ID3.3feet q) Ifthisconditionismet,gotonextitem.Ifnot,mark Failandstop.Method2Hmaynotbeused. RpAy- ?1.3?R1.3 RHBi ." ?1.3 ?p R 0 $ . 0DefaultWallEffectsAdjustmentFactor(WAF) @/$/ @43a A0!%D0 AWasadefaultwalleffectsadjustmentfactor(DWAF)used? D3$3 DЀ򀀀Yes򀀀No D3$%D4 DIf yescontinue.If no,skiptheremainingstepsinthisprocedure. @/$%D5  @43b A0!6 AWhatvaluewasusedforDWAF? D3$8 DЀDWAF=򀀀0.9900 : 򀀀0.9950 ; 򀀀Other:򀀀 D3$Ed< DIfDWAF= Other,mark Failandskiptheremainingstepsinthisprocedure.IfDWAF=0.9900or0.9950,goontonextstep. <2$? < =3!@" = <2$A" <43c :0!5d :Outofwhatmaterialistheinsidesurface(SURF)ofthestackorductconstructed? %{ %SURF=򀀀Bricksandmortar & 򀀀Other:򀀀 {   % =l  %Adefaultwalleffectsadjustmentfactorof0.9900forbrickandmortarstacksandductsor0.9950forallothertypesofstacksandductsmaybeusedwithouttakingwalleffectsmeasurements,i.e.,̀(i)IfSURF= Bricksandmortar,thenDWAF=0.9900.(ii)IfSURF= Other,thenDWAF=0.9950 Ifeitheroftheseconditionsismet,mark Pass.Ifneitherismet,mark Fail. -#  -2.2.2,8.1,Table2H2 =3!" =򀀀Pass򀀀Fail =3$5d" =Note:IfthedefaultWAFwasused,nofurtherchecksneedtobeperformed.ThefollowingchecksapplyonlywhenwalleffectsmeasurementsaretakenandtheMethod2Hcalculationalapproachisused. 9$e  9ParticulateBuildupinHorizontalducts ]S$   F@44F@]44 cRC@J  F@44 F@ cIftestingisnotbeingperformedinahorizontalduct,skipthefollowingprocedure.Iftestingisbeingperformedinahorizontalduct,continuewiththefollowingprocedure. ]S$!  B@36B@] E;,!  B@36 B@ EIsthereabuildupofparticulatematterorothermaterialinthebottomoftheduct? %o% %Ѐ򀀀Yes )X& ̀򀀀No % ( %Thecalculationalprocedurebasedonvelocitymeasurementsshallnotbeusedforhorizontalductswherethereisbuildupofparticulatematterorothermaterialinthebottomoftheduct.̀If yesisselected,mark Failanddonotcontinue.Onlyadefaultwalleffectsadjustmentfactormaybeused.If noisselected,continuewithnextprocedure. 1p 9h1 12.2.1,9.1 Ap0!3"p A򀀀Pass򀀀Fail H3$)X4"p HTraversePointDetermination =3$5 =Thefollowingchecksverifykeydeterminants(dlast,db,anddrem)usedtolocatewalleffectstraversepoints. 1 6 145a A0!;j7 AEnterthenumberoftraversepoints(M1TP)inoriginalMethod1traverse D3$ ; DM1TP=C$F$ G6$;j< GF$F$ gV$;j<  0@160@gF$C$C$ G6$;j< GC$F$B$16B$F$ @6$;j= @    @/$;j>  @45b A0!!? AEnterthediameterofstackorduct(D)ininches. D3$[#B DD=E$G$ G6$!C GG$G$ hW$!C n@240n@hG$E$E$ G6$!C GE$G$D$240D$G$ G6$!D G    D3$!E   D45c ND2d &&o NEnterthevaluesincolumns(ii)(iv)asindicatedinthetablebelow.Ifnomeasurementwastakenatadesignatedlocation,enter NM(i.e.,nomeasurement). 4*$m& 4 % _ %PortID B8&|"rrl  BDistancefromwallwheremeasurementsweretaken @6$|"  @ @ Valuesusedtocheckcol.iiiand(iv) E;5G"mmN E %  % .pp  .1in.incrementedwalleffectstraversepoints Ip6$0 "pp Idrem ND50 ",p N     % 9  % *p 9  *ClosestPointtoWall Fpp3$_ "p FFurthestPointfromWall(dlast) @6$_"pp @ 4*9 4 @ db V fromEq.2H4 * _" *drem V fromEq.2H1 "_" " % Q  %(i) .$ n" .(ii) 7pp$ n" 7(iii) =3$ n"pp =(iv) .$ n" . @ (v) *  n" *(vi) " n" " %  ` %A .$ " .򀀀inches 2p# " 2 Fp3! "p Finches @6$ "p @ Ep2$ " EinchesE$H$ KA! "p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KH$H$ VL! "p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C 0@VH$E$E$ KA! "p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KE$C$Enteravaluein45a.C$E$C$Entervaluein45bC$E$H$E$16.08E$H$H$Enteravaluein45a.H$ %& " C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C   C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2%C$Entervaluein45a.C$E$C$Entervaluein45bC$E$H$E$Entervalueincol.(iii)E$H$H$Entervaluein45a.H$  "" C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2   %  x " %B .$# #" .򀀀inches 2p## $" 2 Fp3!# %"p Finches @6$# &"p @ Ep2$# '" EinchesE$H$ KA!# ("p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KH$H$ VL!# ("p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C 0@VH$E$E$ KA!# '"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KE$ @ C$Enteravaluein45a.C$E$C$Entervaluein45bC$E$H$E$16.08E$H$H$Enteravaluein45a.H$ %& *" C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C   C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2%C$Entervaluein45a.C$E$C$Entervaluein45bC$E$H$E$Entervalueincol.(iii)E$H$H$Entervaluein45a.H$  ," C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2   %  , %C .$; -" .򀀀inches 2p#; ." 2 Fp3!; /"p Finches @6$; 0"p @ Ep2$; 1" EinchesE$H$ KA!; 2"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KH$H$ VL!; 2"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C 0@VH$E$E$ KA!; 0"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C KE$ @ C$Enteravaluein45a.C$E$C$Entervaluein45bC$E$H$E$16.08E$H$H$Enteravaluein45a.H$ %& 4" C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C   C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2%C$Entervaluein45a.C$E$C$Entervaluein45bC$E$H$E$Entervalueincol.(iii)E$H$H$Entervaluein45a.H$  6" C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2   , 6 ,D D3$S 7" D򀀀inches Cp2$S 8" C Fp3!S 9"p Finches G6$S :"p G Ep2$S ;" EinchesE$H$ RA!S <"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C RH$H$ ]L!S <"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C 0@]H$E$E$ RA!S 9"p C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C RE$ @ C$Enteravaluein45a.C$E$C$Entervaluein45bC$E$H$E$16.08E$H$H$Enteravaluein45a.H$ ;*5>" C# *Enter a value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45bC@2?1 ?1@4C   C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2;C$Entervaluein45a.C$E$C$Entervaluein45bC$E$H$E$Entervalueincol.(iii)E$H$H$Entervaluein45a.H$ ' @" C# &Enter value in 45a.C0@16 *Too few M1 Trav. Pts.C# $Enter value in 45b@# 2Enter value in col. (iii)@@ ,Col. iii value too bigC@2 C@2CC@2 @2C@2@?0.5@ @2  '45d A0!k$A ADidtheMethod1traversehaveasufficientnumberoftraversepoints? D3$-C DMethod2HmustbeperformedinconjunctionwithaMethod1traverseconsistingof16ormorepoints,i.e.,@9IM1TP16 jG Ifthevalueinitem45asatisfiesthiscondition,continuewiththenextstepinthisprocedure.Ifnot,mark Failandstop.ThecalculationalprocedureunderMethod2Hcannotbeused. @/${4L @2.2.1,8.2.1 :0!-N" :򀀀Pass򀀀Fail bQ&k$O"EEO  F@45F@b45e aPAP  F@45 F@ aWasanywalleffectstraversepointtooclosetothecenterofthestackorduct? D3$LR Ddlastmustnotbeclosertothecenterofthestack S orductthanthedistanceoftheinteriorboundary(db)oftheMethod1equalareasectorclosestto UU thewall,i.e.,@!!9Idlastdb W Ifanyofthevaluesincolumn(iii)isgreaterthanthecorrespondingvalueincolumn(v),mark Fail.Ifnot,continuewiththenextstepinthisprocedure. @/$!\\ @8.2.2.3 :0!]" : ( m&] (45f A0!5d AWasthevalueofdremcorrectlycalculated? 5d (Note:dremmustbecalculatedusingEq.2H2   fora16pointMethod1traverseorEq.2H1forMethod1traversewithmorethan16points.) D3$=l DIfeachvalueincolumn(iv)iswithin0.25in.ofthecorrespondingvalueincolumn(vi),mark Passandcontinuewiththenextstepinthisprocedure.Ifnot,mark Fail,i.e.,@>I[# `E| | | "[߈ @/$.  @8.2.2.2 :0!5d " : (   (45g A0!U  ADid NMappearanywhereincolumn(ii)? D3$U  DAtaminimum,measurementsmustbetakeninallfourMethod1exteriorequalareasectorsat1in.fromthewalloratthe1in.incrementedwalleffectstraversepointclosesttothewallwheretheprobecanbepositionedandvelocitypressurecanbedetected.If NMappearsanywhereincolumn(ii),mark Fail.Ifnot,continuewiththenextstepinthisprocedure. @/$'V  @8.2.2 :0!U " : !   !45h +!}  +If NMappearedincolumn(iv),wasthevalueincolumn(vi)withininchofthevalueincolumn(iii)? .$0 .Ataminimum,measurementsmustbetakeninallfourMethod1exteriorequalareasectorseither(a)atpositiondremor(b)atdlast,ifdremis 0! withininchofdlast. " Mark Failif NMappearedincolumn(iv),andthevalueincolumn(vi)wasnotwithininchofthevalueincolumn(iii),i.e.,if@>I[#" `EK  K #[߈Ifthisconditiondoesnotapplyorifno NMappearedincolumn(iv),mark Pass. * + *8.2.2,8.2.4.2 +!?n-" + 0 H - 0TraversePointVerification =3$. =ThefollowingMethod2HcheckssupplementthosetypicallyperformedunderMethods2Fand2G.TheMethod2Fand2Gtraversepointchecksshouldbeperformedinconjunctionwiththefollowingchecks,buttheirdescriptionisnotrepeatedhere.(Seeitem34above.) 1 20 146a A0!Y1 AIfamanualprobeisused,aretheprobelengthsneededtoreacheachMethod1andwalleffectstraversepointmarkeddirectlyontheprobesheath?Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. D3$ 4   D9.2.1 RA2Y5" ##  R򀀀Pass򀀀Fail @/$Y6" @46b A0!3"b7 AWeredifferentcolormarksusedtodistinguishMethod1andwalleffectstraversepoints? =3$3"b8  = , !8 ,RecommendationOnlyD3$"$:" D46c RA2d++ RSpotcheckselectedwalleffectstraversepointmarkingsbyenteringthevaluesindicatedbelowfortheselectedtraversepoints.Includeatleastoneoftraversepointlocatedatdremanddlast.Ifall m& valuesincolumn(vi)donotexceed1/4inch,mark Passandskiptheremainingstepinthisprocedure.Ifanyvalueincolumn(vi)isgreaterthan1/4inch,performtheproceduresinstep46d. =3$  = % G  %򀀀Pass򀀀Fail 6,&d"  6 !  !Port/TraversePointID(e.g.,A1w,A2w) +!F " +ЀTraversePointDistancefromWallCalculatedasSpecifiedin2H,section8.2 .$ " .Adjustmentsduetoportflangeandnipples .$F" .ResultingCalculatedProbeLengths .$F" .Measuredprobelengths .$" .Calculatedvs.Measuredprobelengths|col(v)col(iv)| .$F" . %  %    !   !(i) +!g " +(ii) .$g !" .(iii) .$g "" .(iv) .$g #" .(v) .$g $" .(vi) %g %" %   %  %  % % ! Y  % !򀀀 +! v &" +򀀀inches .$ v '" .򀀀inches .$ v (" .򀀀inches .$ v )" .򀀀inches .$ v *" .򀀀inches .$ v +" . % Y  + % % Y  + % !  h + !򀀀 +! ," +򀀀inches .$ -" .򀀀inches .$ ." .򀀀inches .$ /" .򀀀inches .$ 0" .򀀀inches .$ 1" . %  h 1 % %  h 1 % !  1 !򀀀 +!i" 2" +򀀀inches .$i" 3" .򀀀inches .$i" 4" .򀀀inches .$i" 5" .򀀀inches .$i" 6" .򀀀inches .$i" 7" . %  7 % %  7 % ! [7 !򀀀 +!x8" +򀀀inches .$x9" .򀀀inches .$x:" .򀀀inches .$x;" .򀀀inches .$x<" .򀀀inches .$x=" . % [= % % [= % ( j= ( A0!>" A D3$?" D D3$@" D D3$A" D D3$B" D =3$C" = % jC % % jC %46d C2#k$DEE" CForanypointthatdoesnotmeettheinchspecificationinitem46c,thefollowingcheckisperformedtoseeifthepointmeetsthespecialprovisionofbeingwithininchofaMethod1traversepoint. 4*$-F 4 % F % , F ,Foreveryvalueincolumn(vi)greaterthaninch,performthefollowingcheck: =3$EH =Whenthedistancebetweenawalleffectstraversepoint(columnii)andaMethod1traversepointislessthaninch,i.e.,@>[#$ `E$[,measurementsmaybetakenatthepointthatisfartherfromthewall,andtheresultingvelocityvalueusedforbothpointsIf[#$ `E~~%[߀foranypointchecked, LQ mark Fail.Thatpointdidnotmeettheconditioninitem46corthespecialprovisionofbeingwithininchofamethod1traversepoint.If[~#$ `EP P &[߀foreverypointchecked  W inthisstep,mark Pass.Thespecialprovisionwassatisfied. ?5&!\Y^^* ?8.2.4.1 <2#<Z"VV" < % Z % , }6Z ,Entercalculateddistancefromwall(dw)shownin \\ column(ii)forthispoint D3$e] D D3$^" Dinches =3$_" = % }6_ % % }6_ % % }6_ % , _ ,Enterdistancefromwall(dM1)ofMethod1traverse a pointclosesttowall D3$|b D D3$?c" Dinches =3$?d" = % d % % d % % d % % 9d %Findtheabsolutevalueofthedifferencebetweentheprecedingtwovalues,i.e.,[#' `E!!!!'[ .$!h . .$Vi" .inches .$Vj" . % 9j % % 9j %0 9j 0Sampling D3$5d DThefollowingMethod2HcheckssupplementthoseperformedonMethods2,2Fand2G.Thechecksofsystemresponsetimeandsamplingprocedures(items38and39above),performedonMethods2,2F,and2G,mustalsobeperformedwhenMethod2Hisused,buttheirdescriptionisnotrepeatedhere. @/$> @47a A0!e AWassystemresponsetimedeterminedbeforethestartofthefieldtestbyplacingthe coldprobeataMethod1traversepoint,notawalleffectstraversepoint?Ifso,mark Pass.Ifnot,mark Fail. @/$' V  @8.4.1 A0!e" A򀀀Pass򀀀Fail @/$e " @47b A0!}   AWeretemperaturemeasurementsforMethod2Hobtainedinoneofthefollowingtwoways:(i)Takingmeasurementsateachwalleffectstraversepoint,or(ii)TakingmeasurementsattheMethod1traversepointclosesttothewallateachport.Ifoneofthesetwooptionswasused,mark Pass.Ifnot,mark Fail. @/$   @8.4.2 A0!} " A򀀀Pass򀀀Fail @/$} " @47c A0!H  AWeretheMethod1andwalleffectstraversepointsaccessedfromthesameportsampledwithoutinterruption?Ifso,mark Pass.Ifnot,mark Fail. @/$   @8.3.2.1 A0!H " A򀀀Pass򀀀Fail @/$H " @47d A0!1`  AWastheMethod1traversepointclosesttothewallsampledinsequencebetweentheadjacentwalleffectstraversepoints? @/$"   @8.3.3 A0!1` " ARecommendationOnly `O$" "  G@47G@`47e aPAIx  G@47 G@ aWasthesametypeofprobe(e.g.,thesphericalprobe)usedtotakemeasurementsatallMethod1andwalleffectstraversepoints?Ifso,mark Pass.Ifnot,mark Fail.(Note:Differentcopiesofthesametypeofprobemaybeused(e.g.,copy1and2ofasphericalprobe)butnotdifferenttypesofprobes(e.g.,asphericalandaTypeS). @/$Q!  @8.3.4 A0!Ix"" A򀀀Pass򀀀Fail @/$Ix#" @47f A0!$ AWastheIDnumberoftheprobeusedateachtraversepointrecorded? @/$%  @8.3.4 A0!&" A򀀀Pass򀀀Fail 9/$'" 947g +!,( +Wereadequatemeasurestakentosealthestackportduringtestingtopreventfluegasinandoutleakagesthatcouldjeopardizemeasurementsattraversepointsclosetothestackorductwall? KA*  "@9.3"@K9.3 LB3,+" "@9.3 "@ LRecommendationOnly 9$-" 9PartialorCompleteTraverseCheck D3$D. DThefollowingcheckisusedtodeterminewhetherapartialorcompletewalleffectstraversewasperformed.Thisisimportantbecausealower(i.e.,morebeneficial)WAFcanbeclaimedwhenacompletetraverseisperformedthanwhenapartialtraverseisperformed. @/$-\0 @48a A0!1 AIsanyvalueincol(ii)ofthetableinitem45cgreaterthan4inches? D3$Et3 DForacompletetraverse,ameasurementmustbetakenatthe1inchincrementedwalleffectspointthatisasclosetothewallastheprobecanbepositionedandvelocitydetected,butnofurtherthan4inchesfromthewallIfanyvalueincol(ii)isgreaterthan4inches,mark Partialandskiptheremainingstepinthisprocedure.Ifnot,continuewiththisprocedure. =3$#< =8.2.3 <2#=",' <򀀀Partial > 򀀀Complete ;1&6@mm' ;48b +!d +Weremeasurementstakenin1inchincrementsstartingatthewalleffectspointclosesttothe wallandproceedingouttothelowerofthefollowing(a)12inchesfromthewallor(b)thevalueshownincolumn(v)ofthetableinitem45c? .$7 .Foracompletetraverse,measurementsmustbetakenin1inchincrementsstartingatapointnofurtherfromthewallthan4inchesandproceedingouttotheinterioredgeoftheMethod1equalareasectororto12inchesfromthewall,whichevercomesfirst.Ifsufficientmeasurementswerenottaken,mark Partial.Ifsufficientmeasurementsweretaken,mark Complete. .$} 6 . % G %G <    o (  C$E$H$\H$H$/\H$E$E$\E$C$C$P\C$C$E$H$xH$H$:H$E$E$E$C$C$`C$*}pd=d dd Fdd Fdd dd dd jdd jdd dd dd dd {dd {dd dd dd dd 0dd 0dd p..,wdd ,Cdd , dd ,dd ,dd , dd ,dd +  . - .  !WindTunnelChecks #! # E;$&"  E6$  ԍ6$C$  ԍ  ԍ  ԍC$E$  ԍ  ԍ  ԍE$H$  ԍ  ԍ  ԍH$  ԍ̎  N9*W"    NX X GeneralWindTunnelInformation   XX  G2$z" G D/!; DWindTunnelName: 6#!; 6 ;&; ; D/!;  DAuditor/Observer: 6#!;  6 ;&;  ; D/!;  D D/! &  DAddress: 6#! & 6 ;& & ; D/! & DOrganization: 6#! & 6 ;& & ; D/! & D D/! | DAddress: 6#! | 6 ;& | ; D/! | DLocation(City,State): 6#! | 6 ;& | ; D/! | D D/!=  DContact: 6#!=  6 ;&=  ; D/!=   DPhone#: 6#!=   6 ;&=  ; D/!= ! D D/! ( "  DPhoneNumber: 6#! ( #  6 ;& ( $ ; D/! ( % D D/! ( &  D D/! ( '  D D/! ( ( D D/!~ ) D D/!~ * D D/!~ + D D/!~ , D D/!~ - D D/!~ . D1'%~ /   1*zp{d dwdd wCdd C dd  dd dd  dd dd }p.., dd ,dd ,dd ,dd ,dd ,dd ,dd ,'dd +  + 20 +ID A0!1" AParameters @/$2" @Specifications =,!3" =Cite =,!4" =Outcome J5&5"   JPorts ]S$W6  H@49H@]49 _UCB7&'  H@49 H@ _Indicateportsfoundinthewindtunnel: =3$B8 =Thewindtunnelmusthaveaportfortestedprobe.Aseparateportforthecalibrationpitotisoptional.Thecalibrationpitotmayeitherbeinsertedinaseparateportortheportusedforthetestedprobe.Ifbox aisnotchecked,mark Failandskiptheremainingstepinthisprocedure.Ifbox aischecked,continuewiththefollowingstep. <2#AC)} <6.11.4 <2#BD"++) <򀀀Pass @+ 򀀀Fail BE  @6#oF"$$M @ $ 4F $a 0p#!LG 0 4*LHp 4PortforTestedProbe 4*$LI 4  4I   4I  =34I    = ( $I ( 4*$<J 4 % $J % % $J % 4*$J    4 $ J $b 0p#!,K 0 4*,Lp 4PortforVerificationofAxialFlow6$  ԍ6$C$  ԍ  ԍ  ԍC$E$  ԍ  ԍ  ԍE$H$  ԍ  ԍH$H$  H$H$H$  ԍ̎  5+%,M 5  M   M  4*M    4 $ oM $ <p/!N < =3!O p  =(located90fromtestedprobeport) 4*$P  4  oP   oP  =3oP    = ( _P ( 4*$w Q 4 % _Q % % _Q % 4*_Q    4 $ OQ $c 0p#!gR 0 4*gSp 4PortforCalibrationPitot 4*$gT 4  OT   OT  4*OT    4 % ?T % %WU %  ?U   ?U  0&?U    0 + /U +Indicatetypeofprobeusedfortheaxialflowverification: @3$UW @Aseparateportforverificationofaxialflowisrequirediftheaxialflowverificationisperformedwithanuncalibratedprismshaped3Dprobeorwedgeprobe.Itisnotrequirediftheaxialflowverificationisperformedwithacalibrated3Dprobe.Ifbox eor fischeckedandbox bisnotchecked,mark Fail.Ifneitherbox enor fischecked,markPass. NA2e"a++G NЀ10.1.2 KA2(b"11G K ) /b ) $ Gb $d 0p#!_c 0 4*_dp 4Calibrated3Dprobe 4*$_e 4  Ge   Ge  =3Ge    = ( 7e ( 4*$Of 4 % 7f % % 7f % 4*7f    4 $ !f $e 0p#!9g 0 4*9hp 4Uncalibratedprismshaped3Dprobe6$  ԍ6$C$  ԍ  ԍ  ԍC$E$  ԍ  ԍ  ԍE$H$  ԍ  ԍH$H$  H$H$H$  ԍ̎  5+%9i 5  !i   !i  =3!i    = (  i ( @6$) j  @(e.g.,DAT,DA) 4*$) k  4 %  k % %  k % 4* k    4 $ !k $f 0p#!!l 0 4*!mp 4Uncalibratedwedgeprobe 4*$!n 4  !n   !n  /%!n    / % !n % % "o %  !o   !o 6!!o   6Dimensionsof TestSection @/$d @50a 8'! 8&CircularDuct  Diameter(D) 7&| 7W=򀀀inches =,! =D12inches :0! :6.11.1 <2#"N <򀀀Pass @+ 򀀀Fail 8.#"N 850b "   "&RectangularDuct    Length(L):Width(W):  O  L=򀀀inches  W=򀀀inches  O Theshortersideshouldbenolessthan12inches,i.e.,@AA=Y#! `EHJJHJ(Y߈ "  "  n  0 n 0DistanceofCalibrationLocationfromWall YO$g 0  I@51I@Y51 KA2   I@51 I@ KClosestdistancefromwallofanypointincalibrationlocation * A  *򀀀inches '  'CircularDuct   Distance0  4inchesor25%oftunneldiameter  H  (whicheverisgreater) $$ RectangularorEllipticalDuct   Distance0  4inchesor25%ofcrosssectional  ! axis(whicheverisgreater) SIP "$$  @3.20 @S3.20 I?4 #"  @3.20  @ I򀀀Pass @+ 򀀀Fail 6! $" 6Blockage @/$% @52a A0!3& AProjectedarea(P)ofprobehead,shaft,andattacheddevicesinsidewindtunnel @/$yB* @P=򀀀0  square 3+ inches D:+,   DTheblockagebytheprobehead,shaft,andattacheddevicesshallnotexceed4%ofthecrosssectionalareaofthewindtunnel,i.e.,@=Y#" `EHooHo)Y߈Ifthisconditionismet,mark Pass.Ifnot,mark Fail. <2#C 5N <6.11.1 <2#36"Q <򀀀Pass @+ 򀀀Fail 8.#37"Q 852b +!8 +Crosssectionalarea(A)ofwindtunnelatcalibrationlocationG2Circularducts: = A=!'(diameter/2)2 Q> Rectangularducts: @ A=length'width#2G# * VA *A=򀀀0  square B inches ,"qC   ,  KC   KC  0 KC 0VelocityRange @/$MD @53a A0!E ALowestvelocity(L)tunneliscapableofmaintaining. @/$^'H @L=򀀀ft/sec :0!I :Windtunnelshouldbecapableofmaintainingvelocitiesbetween20and100ft/sec,i.e.,@=[#* `EH   H  *[߈ <2#!mOV <6.11.2 <2#P"V <Recommendationonly 8.#eR"  V 853b +! }S +Highestvelocity(H)tunneliscapableofmaintaining. * 8" V *H=򀀀ft/sec " }W "  P W   P W 0 P W 0VelocityPressureCrossCheck @/$%d @54a A0!{ AWasthisprocedureperformedusingacalibrationpitottubewhichsatisfiedthechecksdescribedinitem#57below? @/$> @Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,goontonextstep. =,!=| = =,!{" = A0!{ " A54b RA2U EEN RWerepressuremeasurementstakenatallthetestpointsspecifiedinthemethod? @/$ V  @Pressuremeasurementsmustbetakenat(i)thefixedcalibrationpitottubelocationand(ii)1in.orsmallerintervalsacrossthefulllength,widthanddepth(ifapplicable)ofthewindtunnelcalibrationlocation.Ifmeasurementswerenottakenatallofthespecifiedtestpoints,mark Failandskiptheremainingstepsinthisprocedure.Ifmeasurementsweretakenatallthespecified,pointsgotonextstep. :0!(  :3.2010.1.1 <2# V"CC Y <򀀀Pass @+ 򀀀Fail <2#U"++!Y < ,   ,Ateachtestpointwerethreedifferentialpressuremeasurementstakenateachwindtunnelvelocitysetting? @/$ @Ifso,gotothenextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!@ : %   % %   % ,  ,Wereeachofthethreemeasurementsatapointinthewindtunnelcalibrationlocationalternatedwiththethreemeasurementsatthecalibrationpitottubelocation? @/$_# @Ifso,gotothenextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!% : % % % % % % , Q% ,Wastheprocedurerepeatedatthelowestandhighestvelocitysettingatwhichprobeswillbecalibrated? @/$9x( @Ifso,gotothenextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!w* : % Q* % % Q* % , +j* ,WerethepressuremeasurementvaluesrecordedinatablesimilartoTable2F4or2G4? @/$R- @Ifso,gotothenextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!Q/ : % +j/ % % +j/ %54c C2#drr.` CForeachtestpointinthewindtunnelcalibrationlocation,werethefollowingvaluescalculatedandwerethespecificationsonthesevaluesachieved? =3$ =Theaveragevelocitypressureateachtestedpointinthecalibrationlocationmustbewithin2%(Case1)or0.01inchesH2O(Case2),whicheverisless  restrictiveoftheaveragevelocitypressureatthefixedcalibrationpitottubelocation,i.e.Case1 e.  @//=[#& `EHTo $o $HTo $+[߈Case2 m 6 @=[ij#' `EH+  H+ ,[߈ OneofthesetwoconditionsmustbemetateverytestedpointandeverytestedvelocityshowninTable2F4or2G4.Ifthisoccurs,mark Pass.Ifnot,mark Fail. <2# <<Y < % 7 %  7  , s< ,Averageofthreevelocitypressurereadings(PCAL)atapointinthe [$ CalibrationLocation @/$  @PCAL=򀀀in.H2O 1'! 1  s<   s<  % s< % %  x %Averageofthreecorrespondingvelocitypressurereadings(PSTD)atcalibration Y "  pitottubelocation *   *PSTD=򀀀in.H2O +!   + %  x  % %  x  % 0  x  0AxialFlowVerification D3$q: ! D55a RA2"rrGc RWastheaxialflowverificationperformedwithacalibrated3Dprobe? @/$R$ @Ifso,skiptoitem55b.Ifnot,continuewiththisprocedure. :0!R& :3.2010.1.2 <2#K)"ii1c <򀀀Pass @+ 򀀀Fail <2#*"112c < , {D* ,Wastheaxialflowverificationperformedwithanuncalibratedprismshaped3Dprobe(e.g.,DAorDAT)oruncalibratedwedgeprobe? @/$%. @Ifnot,mark Failandskiptheremainingstepsinthisprocedure.Ifso,continuewiththisprocedure. :0!j0 : % {D0 % % {D0 % , 0 ,Wereanglemeasurementsateachtestpointtakenfromtwoports:thetestedprobeportandasecondport90fromthetestedprobeport? @/$4 @Ifnot,mark Fail.Ifso,continuewiththisprocedure. :0!=6 : % 6 % , 6 ,55b RA27rrYg RWereyawandpitchanglemeasurementstakenatallthetestpointsusedinVelocityPressureCrosscheck?(Seeitem54babove.) @/$]&; @Ifso,goontonextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!= : % |= % % |= % , O= ,Ateachtestpointwereyawandpitchanglemeasurementstakenatthelowestandhighestvelocitysettingatwhichprobeswillbecalibrated? @/$A @Ifso,goontonextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!u>C : % OC % % OC % ,  C ,WeretheyawandpitchanglemeasurementsrecordedinatablesimilartoTable2F5or2G5? @/$" F @Ifso,gotothenextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. :0!"H : %  H % !  H !55c +!%d +Dideverymeasuredyaw([#- `E!!-[)andpitch([#. `E!!.[) %d  anglemeettherequiredperformancespecifications? * -l *Ateverytestpointandvelocitysettingeachmeasuredyawandpitchangle(recordedinatablesimilartoTable2F5or2G5)mustbewithin3of0,i.e.,@=[#( `EHH/[߈Iftheseconditionsaremetbyeverymeasuredyawandpitchangle,mark Pass.Ifnot,mark Fail. +!5 t + %  % 0  0PitchAngleProtractorPlate(Method2Fonly) D3$  D56a RA2 99hj REnteranglesshownonpitchplate(PLATE) @/$  @򀀀degrees A0!  AAtaminimum,theprotractorplateshallindicateanglesin5incrementsfrom15to+15.Additionalanglesettingsmustbesymmetricaround0(i.e.,if20and25areshown,+20and+25mustalsobeshown)andmustexceedthelargestpitchangleexpectedinthefieldby5.Ifalltheseconditionsaremet,mark Pass.Ifnot,mark Fail. RA20<<Ic R10.6.11 RA2 "99\k R򀀀Pass @+ 򀀀Fail B82 "99]k B ,   ,Enterlargestpitchangleexpectedinfield. @/$ ! @򀀀degrees 1'!8 " 1   "    "    "  %  " %Aretheanglesshowninincrementsof5? %P # % %  # % %  # %   #  ( B# (Arethe5incrementssymmetricaround0? 4*$g$ 4 % B$ % % B$ %  B$  ( Y$ (Dotheyextendatleastfrom15to+15? 4*$% 4 % Y% % % Y% %  Y%  , % ,Dotheyexceedby5thelargestpitchangleexpectedinthefield? 4*$' 4 % ' % % ' % ! ' !56b +!+j( +Anglesmeasuredbyinspector(INSP) !,* !򀀀degrees  +j+ Theprotractorplateshallindicateanglestoaresolutionof2ateverypitchanglesetting,i.e.,Wvw! `E#dd#d0W ,- @--=Yor#( `XEHWr0r0HWr01Y߈Ifthisconditionismetateveryanglesetting,mark Pass.Ifnot,mark Fail. '2 '6.11.5 '+j3" '򀀀Pass @+ 򀀀Fail"+j4" 5 "  4 C$E$H$DH$H$EDH$E$E$DE$C$C$sDC$xC$E$H$H$H$PH$E$E$E$C$C$C$X XC$E$H$H$H$[H$E$E$E$C$C$C$C$E$H$dH$H$fdH$E$E$dE$C$C$dC$[ *pd6d dd dd dd dd dd dd dd 'dd 'zp{..,**dd +  /  /#XX # !CalibrationPerformanceChecks#! u#Ԁ C9&Ed"    C6,* *"     6*epdd**dd **p..e, dd ,dd ,dd ,dd ,dd ,dd ,W dd ,edd ,dd ,'dd +  + On +ID A0!" AParameters D3$" DSpecifications @/$" @Cite =,!" =Outcome J5&"    JCalibrationPitotTube D3$ (   DWasaqualifyingstandardpitotusedasthereferenceforthecalibration? @/$_~   @57a A0!  ADidithaveacalibrationcoefficientobtainedfromtheNationalInstituteofStandardsandTechnology(NIST)ortraceabletoNIST? D3$9 X  DAstandardpitotthatmeetsoneofthefollowingconditionsmaybeused:Condition#1:Knowncalibrationcoefficient 9 X obtaineddirectlyfromNIST.Condition#2:Knowncalibrationcoefficient   obtainedbycalibrationagainstanotherstandardpitotwithaNISTtraceablecalibrationcoefficient.Ifeitheroftheseconditionsismet,mark Passandskiptheremainingstepsinthisprocedure.Ifneitherismet,continuewiththefollowingsteps. =3$Ih  =6.10Method2,2.7,Fig24 <2#  " gg+'  <򀀀Pass򀀀Fail <2#" &&" <57b C2#++}r CWasitdesignedaccordingtothespecificationsdefinedbelow? 4*$ 4  ;Z   ;Z  ,  ,Doesithaveahemispherical(showninMethod2Fig.24),ellipsoidal,orconicaltip? =3$! =Pitotsmeetingallofthefollowingconditionsmaybeusedasareference:(i)Musthaveahemispherical,ellipsoidal,orconicaltip.(ii)[#+ `E_}_}2[ ( (iii)[#, `E3[ $* (iv)Staticpressureholes0  07;$;$(a)Ofequalsize, 7;$7;$ 0  07;$;$(b)[#- `E3 LL3 L4[, ,.7;$7;$ 0  07;$;$(c)Equallyspacedinpiezometerringconfiguration. 7;$7;$ (v)[#. `E;;5[߀withcurvedormiteredjunction 42 (vi)[#/ `Ea66a66[ 4 Ifalloftheaboveconditionsaremet,mark Pass.Ifallarenotmet,mark Fail. 6,&! 7wwr 6  7  % 7 % , '7 ,Entertheexternaldiameter(D)ofthepitottubing @/$: @ =,!l;" =in. :0!l< : % '< % % '< % % '< % , < ,Enterthestraightrundistance(dT)fromthe '> tiptothestaticpressureholes @/$@ @ =,!FeA" =.in :0!FeB : % B % % B % % B % , ~B ,Enterthestraightrundistance(dB)fromthe D staticpressureholestothecenterlineoftheexternaltubefollowingthe90bend @/$H @ =,!I" =.in :0!J : % ~J % % ~J % % ~J % , J ,Enterdiameter(DH)of  !K staticpressureholes @/$ L @ =,! !M" =.in 1'! !N 1 % N % % N % % N % , "4!N ,Entertheangleofthebend(B)intube @/$;#Z"P @ =,!y"!Q" = 1'!y"!R 1 % "4!R % % "4!R % % "4!R % %  %Enterstandardpitot calibrationcoefficient(Cp(std)) *  * '%d" ' +!%d + %  % %  % 0   0PreparatoryChecks YO$>   M@58M@Y58 KA2U  M@58 M@ KDidtheprobehaveapermanentscribeline(manualprobes)orscribelinesurrogate(automatedprobes)andmeetalltherelevantrequirementsspecifiedaboveinitems48? *  V  *2F:6.1.5.12G:6.1.6.110.4.3 '  " '򀀀Pass򀀀Fail G=U "  M@59M@G59 KA2/ n  M@59 M@ KImmediatelypriortocalibratingaprobe,didthetesterperformandsatisfyallprovisionsoftheprobeheadinspection(item17above),horizontalstraightnesscheck(item19),andleakcheck(item36)?Ifso,mark Pass.Ifnot,mark Fail. LB  $@10.3$@L10.3 I?4/ n" $@10.3 $@ I򀀀Pass򀀀Fail G=/ n"  N@60N@G60 KA2 H   N@60 N@ KImmediatelypriortocalibratingaprobe,weretestsperformedtoensurethatallprovisionsapplyingtopressuremeasurementdevices(items2127and37),digitalinclinometers(item29),protractorwheelandpointerdevices(item30),temperaturegauges,andbarometersweremet?Ifso,mark Pass.Ifnot,mark Fail. LBO  $@10.3$@L10.3 I?4 H " $@10.3 $@ I򀀀Pass򀀀Fail G= H "  N@61N@G61 KA2   N@61 N@ KWeretheentryportssurroundingthecalibrationpitottubeandthetestedprobeproperlysealedthroughouttheyawangleandvelocitycalibrations?Ifso,mark Pass.Ifnot,mark Fail. * g *10.6.3,10.6.5 'g" '򀀀Pass򀀀Fail 6! "  6YawAngleCalibration D3$!  D Applicability: 0 Allprobesusedtomeasureyawangles(underMethod2For2G)mustperformthisproceduretodeterminethereference R" scribelinerotationaloffset,RSLO,ifany.Automatedprobeswithoutreferencescribelinesshoulddeterminetherotational # offsetoftheflat(orcomparable,clearlyidentifiablephysicalcharacteristic)whichisusedtoestablishthereferencepositionoftheautomatedprobeassembly.  y. y.  Frequency: 0  (a)Wheneveravelocitycalibrationofaprobeisperformed.Z&y.y. 0  0y.y.0|y.y.0|y.|y.0ly.y.0ly.ly.0\y.y.0\y.\y.(b)Wheneveradetachableprobeheadisuncoupledorreoriented. J9.'y.y.  J62a A0!3r( AWastheyawanglecalibrationprocedureperformedonthemainprobeandalldevices(excludingprobeshaftextensions)thatwillbeattachedtotheprobeinthefield?   D3$y, DIfso,gotonextstep.Ifnot,mark Fail. bQ$3r- %@10.5%@b10.5 SIC3r. %@10.5 %@ S򀀀Pass + 򀀀Fail 3r/  6%40 662b A0!1 AWasacarpenterslevelusedtoensuretheprobewasinahorizontalpositionduringtheprocedure?  D3$S4 DIfso,gotonextstep.Ifnot,mark Fail. @/$5 @10.5.4 1'!6 1 , k6 ,62c RA2 7VV REnterfirstvelocitysettingwherethisprocedurewasperformed. @/$".; @ @/! <" @ft/sec A0! =" AIfnumberofrepetitionsateachvelocitysettingisgreaterthanorequalto2,gotonextstep.Ifnot,mark Fail. UD5-"l@ U10.5.7 B82 AVV B  E A  , 7 ,Enternumberofrepetitionsofthisprocedureatfirst velocitysetting. @/$ @ @/!d" @reps 1'!d" 1  7   7   7  ,  ,Entersecondvelocitysettingwherethisprocedurewasperformed. @/$}F  @ @/!7 " @ft/sec 1'!7 " 1             , o 8  ,Enternumberofrepetitionsofthisprocedureatsecondvelocitysetting. @/$  @ @/! " @reps 1'! " 1  o 8   o 8  , o 8 ,62d ND2o 8 99 NHowwastheyawangledetermined? =3$o 8  =If aischecked,goontonextnumbereditem.If bischecked,continuewiththisitem. F5&1 ll F8.9.1.3 KA2o 8 "99 K )   ) $ a*  $a 0p#!yB  0 4*yB p  4Yawnullingprocedure 4*$yB   4  a*    a*   =3a*     = ( Q  ( 4*$i2  4 % Q  % % Q  % 4*Q     4 $ : $b  ԍa  1p$"R 1 4*Rp  4Curvefittingprocedure 4*$R  4  :   :  4*:    4 % * % %B  %  *   *  0&*    0 ,  ,Wasawindtunneldemonstrationperformedtoshowthatthecurvefittingprocedurewasabletodeterminetheyawangleofflowtowithin1? D3$# DIfso,proceedtonextitem.Ifnot,mark Failandskipremainingstepsinthisprocedure. =3$@ % = % % % L; %  O@62O@L62e ndR&++  O@62 O@ nWhatprocedureswereusedtodeterminethereferencescribelinerotationaloffset,RSLO? =3$( =If aischecked,goontonextnumbereditem.If bischecked,continuewiththisitem. F5&*ZZ F10.5.6 KA2+"++  K ) + ) $ + $a 0p#!, 0 4*-p  4AnnexD @6$.  @ +!. +  .  4*.    4 ( . ( @6$/  @(Section18.4ofMethods2Fand2G) 4*$0  4  0   0  =30    = ( p0 ( 7-$1 7 4*p1 4 % p1 % 4*p1    4 $ Y1 $b  ԍa  1p$"q2 1 +!q3p  +Other:򀀀 7-q4  7 +!Y4 +  Y4  4*Y4    4 % I4 % (a5 ( +!I5 +  I5  'I5    ' ( p95 (WasthealternativeprocedureabletodetermineRSLOtowithin1? @3$_7 @Ifnot,mark Failandskiptonextprocedure.Ifso,continueinthisitem. =3$_9 = % p99 % % p99 % , Q9 ,Isthealternativeprocedureexplainedindetailinthefieldtestreport? D3$w; DIfnot,mark Fail. =3$< = % Q< % % Q< %62f A2#!=rr? AWerevaluesofRSLOcalculatedandrecorded !> foreachrepetitionateachvelocitysetting? B3$!? BIfso,gotonextstep.Ifnot,mark Fail. 9/$!@ 910.5.7 "!A " %  iA % (  (WeretheindividualvaluesofRSLOcorrectly %d averagedandtheresultdocumentedasthe referencescribelinerotationaloffsetfortheprobe? B3$k BIfso,gotonextstep.Ifnot,mark Fail. </$%d <10.5.8 1'!%d 1 %  % ( ] (WastheresultingaverageRSLOusedwhen  yawanglesweredeterminedinthefield? @3$ @Ifso,mark Passandgotonextstep.Ifnot,mark Fail. </$  <10.5.9,8.9.4 1'! " 1 0 ]   0Calibrationof3DProbes(Method2F) D3$    D Applicability: 0 AllprobesusedunderMethod2F./ n y. y.  Frequency: 0  (a)Beforefirstfieldtest. 0y.y. 0  0y.y.0|y.y.0|y.|y.0ly.y.0ly.ly.0\y.y.0\y.\y.(b)Within12monthsoffirstfielduseafteritsmostrecentcalibrationorafter10fieldtests,whicheveroccurslater. y.y. 0  0y.y.0|y.y.0|y.|y.0ly.y.0ly.ly.0\y.y.0\y.\y.(c)Wheneverthereisvisibledamagetotheprobehead g].u y.y.   O@63O@g63 cRC l  O@63 O@ cWasthecalibrationprocedureperformedattwowindtunnelvelocitysettings? =3$  =Iftheanswertoeachquestionis yes,gotonextstep.Iftheanswertoanyquestionis no,mark Failandskiptheremainingstepsinthisprocedure. ?5&P A ?10.6.1,10.6.11,10.6.12 <2#O B <򀀀Pass򀀀Fail 3)# VV 3 ,   ,Ateachvelocitysetting,werepressurereadingstakenin5incrementsoverapitchrangesymmetricaroundzeroandextendingatleastfrom15to+15? 4*$)h! 4   !    !    !  , Z! ,Didthepitchrangeexceedthelargestpitchangleexpectedinthefieldby5? 4*$A# 4  Z#   Z#  % Z# % % 3r# %Wasthetestingacrossallpitchanglesrepeatedatleasttwiceateachvelocitysetting? %Z& %  3r&   3r&  , 3r&  ,VelocityDriftCheck 9/$q'  964a 2!( 2Werepairedcalibrationpitottubeandtestedprobemeasurementstakenateachpitchsetting? ;*$- ;򀀀Yes򀀀No ;*. ;Ifpairedcalibrationpitottubeandtestedprobemeasurementsarenottakenateachpitchsetting,avelocitydriftcheckmustbeperformed.Iftheansweris Yes,skiptheremainingstepsinthisprocedure.Iftheansweris No,continuewiththisprocedure. =3$S5 =10.6.15 <2#6VV <򀀀Pass򀀀Fail ?.#7VV ?64b A0!d AEnterpressuremeasurement(Pt) ]& bycalibrationpitottubeatpointintimet. @/$ @Pt= d (in.H2O) =,!]&" = :0!d" :Ateachvelocitysettingconsecutivemeasurementsbythecalibrationpitottubemustnotdifferbymorethan2%or0.01in.H2O,whicheverisless   restrictive,i.e.,@::=Y#+ `EG ' 'G '7Y߈Ifthisconditionismetforallconsecutivepressure readingsatallvelocitysettings,mark Pass.Ifnot,mark Fail. 6,& :: 6  7  ! 7 !64c 2!7 2Enterpressuremeasurement(Pt+1)  bycalibrationpitottubeatnextconsecutivepointintimet+1 @/$  @Pt+1= 7 (in.H2O) =,!" = 1'!7" 1       !  !64d +!W  +Absolutevalueofdifference(ADiff)  ! betweenthetwoconsecutivepressuremeasurements * _( $ *Adiff= W % (in.H2O)  &" |@# (Enter a value in 64b@# (Enter a value in 64c @@Enteravaluein64b  )" |@# (Enter a value in 64b@# (Enter a value in 64c @@  %  ) % %  ) % ,  )  ,Spotcheckthatsufficientrepetitionswereperformedbyrecordingthefollowingvaluesataselectedpitch/velocitysetting: @/$w@+  @65a A0!, AEnterthepitchangleandvelocitysettingusedinthespotcheck D3$0 DPitchSetting=򀀀 1 Velocity=򀀀ft/sec Q3  =3$4 =Ifoneofthefollowingconditionsissatisfiedmark, Pass.Ifnot,mark Fail.%Diff2%0  0;$;$Noadditionalrepsneededatthis 8 pitch/velocitysetting ;$;$ 2%<%Diff5%0  Onemorerep(foratotalof3 Y"; reps)mustbeperformedatthispitch/velocitysetting ;$;$ %Diff>5%0  0;$;$Fourmorereps(foratotalof6) a*? mustbeperformedatthispitch/velocitysetting I?0A;$;$ I10.6.12,10.6.13 <2#XC <򀀀Pass򀀀Fail ?.#DVV ?65b A0!i2E AEntervelocitypressure(F2)reading +G fromfirstrepetitionatthissetting. @/$xI @ =,!i2J" =in.H2O 1'!i2K 1 % K % % K % ( K (65c A0!L AEntervelocitypressure(F2)reading N fromsecondrepetitionatthissetting. @/$KP @ =,!Q" =in.H2O 8'!R 8 2!jR 2 2!jR 2 0&jR 065d +!jS +Labelthelargerofthetwovalues[# `E? -|7|7? -|78[߀,the c,U smaller[# `Eq ^7^7q ^79[,and %V computethepercentdifference(%Diff):[# `E!q |}|}!q |}:[ 0&![ 0%Diff= j\3 @# (Enter a value in 65b@# (Enter a value in 65c @@ @@Enteravaluein65b %_" @# (Enter a value in 65b@# (Enter a value in 65c @@ @@   =_   =_  , =_  ,Selectapitchanglesettingandperformaspotchecktodeterminewhetherthepercentdifferencebetweentheaveragevelocitycalibration coefficients(F2)obtainedatthefirstandsecondvelocitysettingsiswithinthelimitsprescribedinthetestmethod. @/$  @66a A0!> AEnterthepitchanglesetting(P)andthetwovelocitysettings(VLOWandVHIGHused E  inthespotcheck D3$ F  DP=򀀀 >  VLOW=򀀀ft/sec   VHIGH=򀀀ft/sec =3$E   =Iftheoneofthefollowingconditionsissatisfiedmark, Pass.Ifnot,mark Fail.0  07;$;$07;$7;$%Diff3.0%0;$;$for[bc#9 `EA A ;[E ;$;$ 0  07;$;$07;$7;$%Diff5.0%0;$;$for[#: `E  <[߀or[#: `E  =[ I?0 ;$;$HH I10.6.16 <2# <򀀀Pass򀀀Fail ?.# ?66b A0!]  AAveragevelocitypressure(F2)  ^ coefficientatfirstvelocitysetting. @/$  @ =,!] " =in.H2O 1'!]  1 %  8 % %  8 % (  8 (66c A0!8  AAveragevelocitypressure(F2)  ! coefficientatsecondvelocitysetting. @/$?~ # @ =,!8 $" =in.H2O 8'!8 % 8 2! % 2 2! % 2 0& % 066d +!& +Welabelthelargerofthetwovalues[34# `EW !|7|7W !|7>[߀, W( thesmaller[56# `E ^7^7 ^7?[,and X) computethepercentdifference(%Diff):[78# `E!e|}|}!e|}@[ 0&". 0%Diff= /3 @# (Enter a value in 66b@# (Enter a value in 66c @@ @@Enteravaluein66b X2" @# (Enter a value in 66b@# (Enter a value in 66c @@ @@   1p2   1p2  0 1p2  0Calibrationof2DProbes(Method2G) D3$9x3  D Applicability: 0 AllTypeSprobesusedunderMethod2G.4 y. y.  Frequency: 0  (a)Beforefirstfieldtest.Q5y.y. 0  0y.y.0|y.y.0|y.|y.0ly.y.0ly.ly.0\y.y.0\y.\y.(b)Within12monthsoffirstfielduseafteritsmostrecentcalibrationorafter10fieldtests,whicheveroccurslater. y.y. 0  0y.y.0|y.y.0|y.|y.0ly.y.0ly.ly.0\y.y.0\y.\y.(c)Wheneverthereisvisibledamagetotheprobehead.X X cY.7y.y.   P@67P@c#XX B#67 KA2+j8  P@67 P@ KIsa3Dprobe(e.g.,aDATorsphericalprobe)beingcalibratedforuseunderMethod2Ginyawdeterminationmodeonly? .$; .Ifso,donotcontinuewiththisprocedure.Followthe3Dprobecalibrationproceduresinitems6366toobtainthevelocitycalibrationcoefficientF2at > the0pitchsettingonly.Ifa2DTypeSprobeisbeingcalibratedforuseunderMethod2G,continuewiththefollowingsteps. LBy#C 333333%@10.6333333%@L10.6 I?4+jD" 333333%@10.6 333333%@ I G=+jE  Q@68Q@G68 KA2d  Q@68 Q@ KWasthecalibrationperformedonthemainprobeandalldevices(excludingprobeshaft extensions)thatwillbeattachedtotheprobeinthefield?  .$ .Ifso,gotonextstep.Ifnot,mark Fail. LBd 333333%@10.6333333%@L10.6 TC4d" 333333%@10.6 333333%@ T򀀀Pass򀀀Fail d X X#XX :#X X#XX }#X X G=2v  G#XX #69a +!7 +Wasasamplingprobeand/ornozzlepartoftheprobeassembly? )  .$ .Ifso,continuewiththisprocedure.Ifnot,skipremainingstepsinthisprocedure. LB 333333%@10.6333333%@L10.6 MC47" 333333%@10.6 333333%@ M (  (69b NA2Orr} NSeparationdistance(Dx)betweenTypeS   tubeandsamplingnozzletube </$ ^ < </!O" <in. =0!O =ForTypeSpitottubeswithoutsidediametersbetween3/16and3/8inchandsamplingnozzleswithanoutsidediameterofinch,theseparationdistanceshouldbegreaterthanorequalto3/4inch,i.e.,@9Dx3/4   Ifthisconditionismet,gotonextstep.Ifthisconditionisnotmet,mark Failandskiptheremainingstepsinthisprocedure. </$! $ <Method2:Fig.26a A0! & A 4*& 4 (  & (IstheimpactpressureopeningplaneoftheTypeSpitotabovetheentryplaneofthesamplingnozzle?  @3$) @TheimpactpressureopeningplaneoftheTypeSpitotshallbeevenwithorabovethenozzleentryplane.Ifthisrequirementismet,gotonextstep.Ifnot,mark Failandskiptheremainingstepsinthisprocedure. </$0 <Method2:Fig.26b 1'!92 1X X %  2 %#XX # ( 2 (Entertheseparationdistance(Y)fromtheendofthesampleprobetothecenteroftheTypeSpitotsimpactport. </$#8 < </!Y"9" <in. =0!Y": =Topreventinterference,thedistancefromtheendofthesampleprobetothecenteroftheTypeSpitotsimpactportmustbegreaterthanorequalto3inches,i.e.@7Y3inches a*? Ifthisconditionisnotsatisfied,mark Fail.Ifthisconditionismet,mark Pass. </$pB <Method2:Fig.28 8'!D 8 3&D 369c =0!E =Wasawindtunneldemonstrationperformedthatshowsthattheprobesabilitytoyawnullisnotimpairedwhenthenozzleisdrawingasample? @3$C I @AdemonstrationmustbeperformedtoshowthattheprobesabilitytoyawnullisnotimpairedwhenthenozzleisdrawingasampleIfthedemonstrationwasperformedsuccessfully,mark Pass.Ifnot,mark Fail. ^Q$ O 333333%@10.6333333%@^10.6 ZICP" 333333%@10.6 333333%@ ZX XTJbP  Q@70Q@T#XX #70 cRC%dVV  Q@70 Q@ cWasthecalibrationprocedureperformedattwowindtunnelvelocitysettings? =3$& =Iftheanswertoeachquestionis yes,gotonextstep.Iftheanswertoanyquestionis no,mark Failandskiptheremainingstepsinthisprocedure. B1&k B10.6.1, :0!%d" :򀀀Pass򀀀Fail 3)#%d VV 3 ,   ,Wasthetestedprobesecuredatthe0pitchposition? 4*$>  4 (   (10.6.5,X X 1'!=| " 1 %   % , 0  ,#XX `#WereatleastthreepairsofP U  measurementsobtainedfromthecalibrationpitottubeandtestedprobeateachvelocitysetting? 4*$  4 ( 0 (10.6.9X X 1'!U" 1 % 0 % %   %#XX #Wasthetestedprobeyawnulledandthen  0 rotatedback90beforetakingeachpressurereading? %u  % !   !10.6.7 +! 0" + E;    Q@71Q@E71 \RC    Q@71 Q@ \Willonlyoneleg(e.g.,SideA),nottheotherleg,alwaysbeusedastheimpactpressureport,i.e.,orientedintothedirectionofflow,toobtainvelocitypressuremeasurementsduringfieldtesting? .$ .ThecalibrationproceduremustberepeatedonbothAsideandBsideofaTypeSpitottubeunlessitisalwaysusedinthesameorientation.Iftheprobewillalwaysbeusedinthesameorientation,mark Passandskiptheremainingstepinthisprocedure.Ifnot,continuewiththisprocedure. .$X# .10.6.10 <2# $"  <򀀀Pass򀀀Fail <2# %  < (  J% (WasthecalibrationprocedurerepeatedonboththeAandBsidesofthetestedprobe? @3$1p' @Ifso,mark Pass.Ifnot,mark Fail. 4*$o( 4 #  J( # B- J(  BChecktodeterminewhetherthecalibrationcoefficientsmeettheconditionsspecifiedinMethods2G. @3$I*  @Enterthelow(VLOW)andhigh + (VHIGH)windtunnelvelocities a, atwhichthecalibrationwasperformed. M@5$." MVLOW= / (ft/sec) 0#!a0 0 ?*1  ? YD22   Y YD23r   Y10.6.12 YD24"%   Y KA25&  K ! S5 !VHIGH= 6 (ft/sec) y7   8   S8   S8   S8  0 S8  0LowVelocityChecks =3$9  =SideA .$%d:" .SideB(ifperformed) 8#%d;" 8 :0!%d< :EnterthevaluesofCp { = obtainedatVLOWforSideAin =!|> the1st,2nd,and3rdrepetition !>? ofthecalibration ;1&"@44- ;[tu#A `EtE 77tE 7A[ { A  " { B "EnterthevaluesofCpobtainedat { C VLOWforSideBinthe1st,2nd,and =!|D 3rdrepetitionofthecalibration 8.#!>E0 8]mw%B` `E E 77 E 7B] '{ F ' 5 { G 5 :0!{ H : ! m!H ![#C `Et!77t!7C[ !I   !J  ! m!J !]xy%D` `E !77 !7D] '!K ' 5 !L 5 :0!!M : ! "M ![kl#E `Et"77t"7E[ '#fN   '#fO  ! "O !]%F` `E "77 "7F] ''#fP ' 5 '#fQ 5 A0!'#fR Ae-G`) `E]R>R>]R>Ge,theaverageofthe d threeSideAcalibrationcoefficientsatVLOW @/$ @[#H `Et^>>t^>H[ !d g_@#@#@# *Enter Cp values above @@@gEnterCpvalues above  g_@#@#@# *Enter Cp values above @@@g  e-I`) `EG]R>R>G]R>Ie,theaverageofthethree d  SideBcalibrationcoefficientsatVLOW =,!  =]%J` `E ^>> ^>J] !d  g_@#@#@# *Enter Cp values above @@@gEnterCpvaluesabove  g_@#@#@# *Enter Cp values above @@@g   A0!d A72a RA27? RAveragedeviation([#K `EY77Y7K[)ofindividual  Cpsfromaverage  e-L`) `E!G//!G/LeatVLOW @/$}F @[#M `Et=7=7t=7M[ !7 z@#@#@# *Enter Cp values above @@ @@ @@EnterCpvaluesabove }F z@#@#@# *Enter Cp values above @@ @@ @@  Ateachvelocitysetting,theaveragedeviation(%) 7 ofthethreeindividualCpvaluesfromtheaverage  Cpvaluesmustbelessthanorequalto0.01,i.e.,  @=[#N `EG 77G 7N[߈@=[#O `EG 77G 7O[߈Ifbothoftheseconditionsarenotmet,mark Failandskiptheremainingstepsinthisprocedure.Ifbothconditionsaremet,continuewiththisprocedure. UD5V &zB U2G:10.6.12.4,Method2,4.1.4.4,4.1.4.5 RA2 ,zHH2 R򀀀Pass򀀀Fail KA27-zVV3 K ,  r- ,Averagedeviation([#P `EY 77Y 7P[)ofindividual  / Cpsfromaverage  Z 0 e-Q`) `E! //! /QeatVLOW @/$S  1 @[#R `Et =7=7t =7R[ ! 2 z@#@#@# *Enter Cp values above @@ @@ @@EnterCpvaluesabove S  6 z@#@#@# *Enter Cp values above @@ @@ @@   %  r6 % %  r6 % ,  r6 ,72b RA2 7z[ RIfonlyAsidecalibrationcoefficientsarecalculated,mark Passandskiptheremainingstepsinthisprocedure.IfbothAandBsidecalibrationcoefficientsarecalculated,performthefollowingcheck. 4*$g0: 4 % H : % % H : % , Y": ,AbsolutevalueofdifferencebetweenAsideandBsideaveragee  -S`) `E // /SeatVLOW $A = |t@#@#@#@#@#@# *Enter Cp values above @@|EnterCpvaluesabove A |t@#@#@#@#@#@# *Enter Cp values above @@|  TheabsolutevalueofthedifferencebetweentheaverageCpsmustnotexceed0.01,i.e., HC @=[ #T `EGmmGmT[߈Ifthisconditionismet,mark Pass.Ifnot,mark Fail. =3$ I = % Y"I % 3 Y"I  3HighVelocityChecks @3$a*J  @SideA @3$K" @SideB(ifperformed) G2$L" G :0!M :EnterthevaluesofCp  N obtainedatVHIGHforSideA O inthe1st,2nd,and3rd ZP repetitionofthecalibration ;1&SQ44i ;[  #U `Et0707t07U[  R  "  S "EnterthevaluesofCpobtainedat  T VHIGHforSideBinthe1st,2nd,and U 3rdrepetitionofthecalibration 8.#ZV_ 8]"#%V` `E 0707 07V] ' W ' 5  X 5 :0! Y : ! Y ![^_#W `Et-77t-7W[ c,Z   c,[  ! [ !]$%%X` `E -77 -7X] 'c,\ ' 5 c,] 5 :0!c,^ : ! U^ ![#Y `Et77t7Y[ _   `  ! U` !]&'%Z` `E 77 7Z] 'a ' 5 b 5 A0!c Ae -[`) `Ej>j>j>[e,theaverageofthe  d threeSideAcalibrationcoefficientsatVHIGH @/$!\f @[#\ `Et>>t>\[ ! g g_@#@#@# *Enter Cp values above @@@gEnterCpvaluesabove U" k g_@#@#@# *Enter Cp values above @@@g  e-]`) `EGj>j>Gj>]e,theaverageofthethree  l SideBcalibrationcoefficientsatVHIGH =,!!\n =]%^` `E >> >^] ! o g_@#@#@# *Enter Cp values above @@@gEnterCpvaluesabove !\r g_@#@#@# *Enter Cp values above @@@g   A0! s A72c RA2%dw RAveragedeviation(WDE!- `EYkkYk_W)ofindividual &  Cpsfromaverage  e-``) `E!5//!5/`eatVHIGH @/$k @[()#a `EtU7U7tU7a[ !%d z@#@#@# *Enter Cp values above @@ @@ @@EnterCpvaluesabove k  z@#@#@# *Enter Cp values above @@ @@ @@  Ateachvelocitysetting,theaveragedeviation(%) %d  ofthethreeindividualCpvaluesfromtheaverage &  Cpvaluesmustbelessthanorequalto0.01,i.e.,   @=[*+#b `EG77G7b[߈@=[,-#c `EG{77G{7c[߈Ifbothoftheseconditionsarenotmet,mark Failandskiptheremainingstepsinthisprocedure.Ifbothconditionsaremet,continuewiththisprocedure. UD5{ zz U2G:10.6.12.4,Method2,4.1.4.4,4.1.4.5 RA2.zHH` R򀀀Pass򀀀Fail KA2%dzVVa K ,  ,Averagedeviation(WNO!2 `EYh kkYh kdW)ofindividual   Cpsfromaverage    e./-e`) `E! //! /eeatVHIGH @/$A ! @[01#f `EtU7U7tU7f[ !:" z@#@#@# *Enter Cp values above @@ @@ @@EnterCpvaluesabove A & z@#@#@# *Enter Cp values above @@ @@ @@   % & % % & % , & ,72d RA2  'z RIfonlytheAsidecalibrationcoefficientiscalculated,mark Passandskiptheremainingstepsinthisprocedure.IfbothAandBsidecalibrationcoefficientsarecalculated,performthefollowingcheck. 4*$U * 4 % m * % % m * % , G * ,AbsolutevalueofdifferencebetweenAsideandBsideaverageeTU-5`! `E 0// 0/geatVHIGH $/n- |t@#@#@#@#@#@# *Enter Cp values above @@|EnterCpvaluesabove 01 |t@#@#@#@#@#@# *Enter Cp values above @@|  TheabsolutevalueofthedifferencebetweentheaverageCpsmustnotexceed0.01,i.e., m 3 @=[29#h `EGmmGmh[߈Ifthisconditionismet,mark Pass.Ifnot,mark Fail. =3$89 = % G 9 % H7 G 9  R@72R@H72e aPAO:  R@72 R@ aPercentdifference(%Diff)betweentheaverageeVW-7`- `E // /ie߀obtained = atVHIGHandVLOWfor > SideA @/$W? @%Diff(A)= !O@3 |@#@#@#@#@#@# *Enter Cp values above @@@EnterCpvaluesabove D |@#@#@#@#@#@# *Enter Cp values above @@@  ThepercentdifferencebetweentheaverageCp OE obtainedathighandlowvelocitysettingsmustnotexceed3%,i.e.,[:;#j `EG'  G' j[Ifthisconditionisnotmet,mark Failandskiptheremainingstepinthisprocedure.IfonlytheAsidecalibrationcoefficientiscalculatedandthisconditionismet,mark Pass.IfboththeAsideandBsidecalibrationswereperformed,continuewiththefollowingstep. =3$g Q =10.6.14 <2#OR <򀀀Pass򀀀Fail 8.#OS 872f +!d +Percentdifference(%Diff)betweentheaverageeef-7`- `E // /ke߀obtained  atVHIGHandVLOWfor  SideB * l *%Diff(B)= d z@#@#@#@#@#@# *Enter Cp values above @@@EnterCpvaluesabove   z@#@#@#@#@#@# *Enter Cp values above @@@ IfthecalibrationcoefficientiscalculatedfortheBside,thesameconditionmustbemet,i.e.,̀[<=#l `Eu  u l[ l  Ifthisconditionisnotmet,mark Fail.Ifthisconditionismet,mark Pass. .$ . % 7 % E; 7  @R@73@R@E73 cRC?  EE  @R@73 @R@ cComparisonoftestersandobserversfinalcalibrationcoefficients(SideA) =3$?   = , 1  ,Enterthevalue  ^ e-E`) `E! R>R>! R>me߀usedabove @/$W  @e-h`) `EtW H>H>tW H>ne C2! ^ C @6' ^ @IfthetestersandobserversfinalCpvaluesdiffer  ^ bymorethan0.01,i.e.,@%%=e-m`) `EG 9 m9 mG 9 moe߈itisadvisabletoreviewthetesterscalculations. ?5&_( HH ?10.6.14 <2# ^ VV <RecommendationOnly <2#W "" < , I  " ,Enterthevaluee-h`) `E!1 j>j>!1 j>peusedabove. @/$o 8 $ @e-j`) `Eto `>`>to `>qe C2! v %3 C 7-' v & 7 % I  & % % I  & % % I  & % , a* & ,AveragethetwoprecedingvaluestoobtaintheobserversSideAcalibrationcoefficient(e-i`) `E >> >re) @/$+ @e-l`) `Et>>t>se C2! , C 7-' - 7  a* -   a* -  % a* - % % - %EntertestersfinalSideAcalibrationcoefficient(e-m`) `E i>> i>te) * p0 *e-n`) `Et>>t>ue -##1 - (#2 (  2  % 2 % E; 2  R@74R@E74 cRC3EE  R@74 R@ cComparisonoftestersandobserversfinalcalibrationcoefficients(SideB)(IfSideBoftheprobewascalibrated,performthefollowingcheck.) =3$5  =5$ , z5 ,5$5$ # z5 #5$Enterthevalue 6 e-t`) `E!R>R>!R>ve߀usedabove5$ @/$7 @5$5$ @/$7 @5$e-u`) `EtH>H>tH>we C2!8 C6$ @6'9 @6$6$ 7-'9 76$IfthetestersandobserversfinalCpvaluesdiffer : bymorethan0.01,i.e.,@%%=e-v`) `EG9 m9 mG9 mxe߈itisadvisabletoreviewthetesterscalculations.6$ ?5&?HH ?6$6$ ?5&?HH ?6$10.6.146$ <2#@VV <6$6$ <2#@VV <6$RecommendationOnly <2#B" <5$ , B ,5$5$ # B #5$Enterthevaluee-w`) `E!j>j>!j>yeusedabove.5$ @/$D @5$5$ @/$D @5$e-x`) `Et`>`>t`>ze C2!-E3 C 7-'-F 7 % F % % F % % F %5$ , F ,5$5$ # F #5$AveragethetwoprecedingvaluestoobtaintheobserversSideBcalibrationcoefficient(e-y`) `E >> >{e)5$ @/$MK @5$5$ @/$MK @5$e-z`) `Et>>t>|e C2!EL C 7-'EM 7  M   M  % M %5$ % ? M %5$5$  ? M 5$EntertestersfinalSideBcalibrationcoefficient(e-{`) `E !>> !>}e)5$ * '"P *5$5$ * '"P *5$e-|`) `Ete >>te >~e -# lQ - ( lR (  ? R  % ? R %? R p  e   U    E    5    %         }  m     u    %  }   A$hI 4$ `r1  ` Ee{*!{*!+ "hA$A$C$E$H$ #!S [0 [ U   [  hIo4$ `r1  ` Ee{*!{*!+ "h efefe.e.                                                efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  efefefef  e.e.efefH$H$hIq4$ `r1  ` Ee{*!{*!+ "hH$E$E$hI4$ `r1  ` Ee{*!{*!+ "hE$C$C$hI!4$ `r1  ` Ee{*!{*!+ "hC$A$