TALK=T;RUN(1,1)
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  Group 1. Run Title and Number
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 TEXT(ATMOSPHERIC B.L -3DYZ-E LL TEST         )
 
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 IRUNN = 1 ;LIBREF = 0
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  Group 2. Time dependence
 STEADY = T
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  Group 3. X-Direction Grid Spacing
 CARTES = T
 NX = 10
 XULAST =40.
 XFRAC(1)=0.1 ;XFRAC(2)=0.2
 XFRAC(3)=0.3 ;XFRAC(4)=0.4
 XFRAC(5)=0.5 ;XFRAC(6)=0.6
 XFRAC(7)=0.7 ;XFRAC(8)=0.8
 XFRAC(9)=0.9 ;XFRAC(10)=1.
 ************************************************************
  Group 4. Y-Direction Grid Spacing
 NY = 10
 YVLAST =20.
 YFRAC(1)=0.1 ;YFRAC(2)=0.2
 YFRAC(3)=0.3 ;YFRAC(4)=0.4
 YFRAC(5)=0.5 ;YFRAC(6)=0.6
 YFRAC(7)=0.7 ;YFRAC(8)=0.8
 YFRAC(9)=0.9 ;YFRAC(10)=1.
 ************************************************************
  Group 5. Z-Direction Grid Spacing
 PARAB = F
 NZ = 15
 ZWLAST =100.
 ZFRAC(1)=0.066667 ;ZFRAC(2)=0.133333
 ZFRAC(3)=0.2 ;ZFRAC(4)=0.266667
 ZFRAC(5)=0.333333 ;ZFRAC(6)=0.4
 ZFRAC(7)=0.466667 ;ZFRAC(8)=0.533333
 ZFRAC(9)=0.6 ;ZFRAC(10)=0.666667
 ZFRAC(11)=0.733333 ;ZFRAC(12)=0.8
 ZFRAC(13)=0.866667 ;ZFRAC(14)=0.933333
 ZFRAC(15)=1.
 ************************************************************
  Group 6. Body-Fitted Coordinates
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  Group 7. Variables: STOREd,SOLVEd,NAMEd
 ONEPHS = T
 NAME(1)=P1 ;NAME(3)=U1
 NAME(5)=V1 ;NAME(7)=W1
 NAME(12)=KE ;NAME(13)=EP
 NAME(148)=EL1 ;NAME(149)=ENUT
 NAME(150)=EPKE
    * Y in SOLUTN argument list denotes:
    * 1-stored 2-solved 3-whole-field
    * 4-point-by-point 5-explicit 6-harmonic averaging 
 SOLUTN(P1,Y,Y,Y,N,N,Y)
 SOLUTN(U1,Y,Y,N,N,N,Y)
 SOLUTN(V1,Y,Y,N,N,N,Y)
 SOLUTN(W1,Y,Y,N,N,N,Y)
 SOLUTN(KE,Y,Y,N,N,N,N)
 SOLUTN(EP,Y,Y,N,N,N,N)
 SOLUTN(EL1,Y,N,N,N,N,Y)
 SOLUTN(ENUT,Y,N,N,N,N,Y)
 SOLUTN(EPKE,Y,N,N,N,N,Y)
 VIST = 149
 LEN1 = 148
 ************************************************************
  Group 8. Terms & Devices
    * Y in TERMS argument list denotes:
    * 1-built-in source 2-convection 3-diffusion 4-transient
    * 5-first phase variable 6-interphase transport         
 TERMS(P1,Y,Y,Y,N,Y,Y)
 TERMS(U1,Y,Y,Y,Y,Y,Y)
 TERMS(V1,Y,Y,Y,Y,Y,Y)
 TERMS(W1,Y,Y,Y,Y,Y,Y)
 TERMS(KE,N,Y,Y,Y,Y,N)
 TERMS(EP,N,Y,Y,Y,Y,N)
 DIFCUT =0.5 ;ZDIFAC =1.
 GALA = F ;ADDDIF = F
 NEWENT = T
 ISOLX = -1 ;ISOLY = -1 ;ISOLZ = -1
 ************************************************************
  Group 9. Properties used if PRPS is not
  stored, and where PRPS = -1.0 if it is!
 RHO1 =1.189 ;TMP1 =0. ;EL1 = GRND4
 TSURR =0. ;TEMP0 =273. ;PRESS0 =1.0E+05
 DVO1DT =3.41E-03 ;DRH1DP =0.
 EMISS =0. ;SCATT =0.
 RADIA =0. ;RADIB =0.
 EL1A =0. ;EL1B =0. ;EL1C =0.
 ENUL =1.544E-05 ;ENUT = GRND3
 ENUTA =0. ;ENUTB =0. ;ENUTC =0.
 IENUTA = 0
 PRNDTL(U1)=1. ;PRNDTL(V1)=1.
 PRNDTL(W1)=1. ;PRNDTL(KE)=1.
 PRNDTL(EP)=1.
 PRT(U1)=1. ;PRT(V1)=1.
 PRT(W1)=1. ;PRT(KE)=1.
 PRT(EP)=1.314
 CP1 =1005. ;CP2 =1.
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  Group 10.Inter-Phase Transfer Processes
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  Group 11.Initial field variables (PHIs)
 FIINIT(P1)=1.0E-10 ;FIINIT(U1)=1.0E-10
 FIINIT(V1)=1.0E-10 ;FIINIT(W1)=1.0E-10
 FIINIT(KE)=1.0E-10 ;FIINIT(EP)=1.0E-10
 FIINIT(EL1)=1.0E-10 ;FIINIT(ENUT)=1.0E-10
 FIINIT(EPKE)=1.0E-10
   No PATCHes yet used for this Group
 INIADD = F
 FSWEEP = 1
 NAMFI =CHAM
 ************************************************************
  Group 12. Patchwise adjustment of terms
  Patches for this group are printed with those
  for Group 13.
  Their names begin either with GP12 or &
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  Group 13. Boundary & Special Sources
 
 PATCH(BLINL ,LOW , 1, 10, 1, 10, 1, 1, 1, 1)
 COVAL(BLINL ,P1 , FIXFLU , GRND7 )
 COVAL(BLINL ,U1 ,0. , GRND7 )
 COVAL(BLINL ,V1 ,0. ,0. )
 COVAL(BLINL ,W1 ,0. , GRND7 )
 COVAL(BLINL ,KE ,0. , GRND7 )
 COVAL(BLINL ,EP ,0. , GRND7 )
 
 PATCH(^BLINE ,EAST , 5, 0, 0, 0, 0, 0, 1, 1)
 COVAL(^BLINE ,P1 , FIXFLU , GRND7 )
 COVAL(^BLINE ,U1 ,0. , GRND7 )
 COVAL(^BLINE ,V1 ,0. ,0. )
 COVAL(^BLINE ,W1 ,0. , GRND7 )
 COVAL(^BLINE ,KE ,0. , GRND7 )
 COVAL(^BLINE ,EP ,0. , GRND7 )
 
 PATCH(KESOURCE,PHASEM, 1, 10, 1, 10, 1, 15, 1, 1)
 COVAL(KESOURCE,KE , GRND4 , GRND4 )
 COVAL(KESOURCE,EP , GRND4 , GRND4 )
 
 PATCH(OB1 ,HIGH , 1, 10, 1, 10, 15, 15, 1, 1)
 COVAL(OB1 ,P1 ,1000. ,0. )
 COVAL(OB1 ,U1 ,0. ,0. )
 COVAL(OB1 ,V1 ,0. ,0. )
 COVAL(OB1 ,W1 ,0. ,0. )
 COVAL(OB1 ,KE ,0. ,1.0E-10 )
 COVAL(OB1 ,EP ,0. ,1.0E-10 )
 
 PATCH(OB2 ,SWALL , 1, 10, 1, 1, 1, 15, 1, 1)
 COVAL(OB2 ,U1 , GRND5 ,0. )
 COVAL(OB2 ,W1 , GRND5 ,0. )
 COVAL(OB2 ,KE , GRND5 , GRND5 )
 COVAL(OB2 ,EP , GRND5 , GRND5 )
 
 PATCH(OB4 ,WEST , 1, 1, 1, 10, 1, 15, 1, 1)
 COVAL(OB4 ,P1 ,1000. ,0. )
 COVAL(OB4 ,U1 ,0. ,0. )
 COVAL(OB4 ,V1 ,0. ,0. )
 COVAL(OB4 ,W1 ,0. ,0. )
 COVAL(OB4 ,KE ,0. , SAME )
 COVAL(OB4 ,EP ,0. , SAME )
 XCYCLE = F
 WALLA =0.02 ;WALLB =0.
 EGWF = T
 WALLCO = GRND5
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  Group 14. Downstream Pressure For PARAB
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  Group 15. Terminate Sweeps
 LSWEEP = 400 ;ISWC1 = 1
 LITHYD = 1 ;LITFLX = 1 ;LITC = 1 ;ITHC1 = 1
 SELREF = T
 RESFAC =1.0E-03
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  Group 16. Terminate Iterations
 LITER(P1)=20 ;LITER(U1)=10
 LITER(V1)=10 ;LITER(W1)=10
 LITER(KE)=20 ;LITER(EP)=20
 ENDIT(P1)=1.0E-03 ;ENDIT(U1)=1.0E-03
 ENDIT(V1)=1.0E-03 ;ENDIT(W1)=1.0E-03
 ENDIT(KE)=1.0E-03 ;ENDIT(EP)=1.0E-03
 ************************************************************
  Group 17. Relaxation
 RELAX(P1,LINRLX,1.)
 RELAX(U1,FALSDT,1.)
 RELAX(V1,FALSDT,1.)
 RELAX(W1,FALSDT,1.)
 RELAX(KE,LINRLX,0.5)
 RELAX(EP,LINRLX,0.5)
 RELAX(EL1,LINRLX,1.)
 RELAX(ENUT,LINRLX,1.)
 RELAX(EPKE,LINRLX,1.)
 KELIN = 3
 OVRRLX =0.
 EXPERT = F ;NNORSL = F
 ************************************************************
  Group 18. Limits
 VARMAX(P1)=1.0E+10 ;VARMIN(P1)=-1.0E+10
 VARMAX(U1)=1.0E+06 ;VARMIN(U1)=-1.0E+06
 VARMAX(V1)=1.0E+06 ;VARMIN(V1)=-1.0E+06
 VARMAX(W1)=1.0E+06 ;VARMIN(W1)=-1.0E+06
 VARMAX(KE)=1.0E+10 ;VARMIN(KE)=1.0E-10
 VARMAX(EP)=1.0E+10 ;VARMIN(EP)=1.0E-10
 VARMAX(EL1)=1.0E+10 ;VARMIN(EL1)=-1.0E+10
 VARMAX(ENUT)=1.0E+10 ;VARMIN(ENUT)=-1.0E+10
 VARMAX(EPKE)=1.0E+10 ;VARMIN(EPKE)=-1.0E+10
 ************************************************************
  Group 19. Data transmitted to GROUND
 GENK = T
 PARSOL = F
 ISG62 = 1
 SPEDAT(SET,DOMAIN,PHASE_1_MAT,I,0)
 SPEDAT(SET,BLINL,VELX,R,-1.06065)
 SPEDAT(SET,BLINL,VELY,R,0.)
 SPEDAT(SET,BLINL,VELZ,R,1.06065)
 SPEDAT(SET,BLINL,VDIR,C,Y)
 SPEDAT(SET,BLINL,RHOIN,R,1.189)
 SPEDAT(SET,BLINL,BLTY,C,LOGL)
 SPEDAT(SET,BLINL,ZO,R,0.02)
 SPEDAT(SET,BLINL,REFH,R,10.)
 SPEDAT(SET,BLINE,VELX,R,-1.06065)
 SPEDAT(SET,BLINE,VELY,R,0.)
 SPEDAT(SET,BLINE,VELZ,R,1.06065)
 SPEDAT(SET,BLINE,VDIR,C,Y)
 SPEDAT(SET,BLINE,RHOIN,R,1.189)
 SPEDAT(SET,BLINE,BLTY,C,LOGL)
 SPEDAT(SET,BLINE,ZO,R,0.02)
 SPEDAT(SET,BLINE,REFH,R,10.)
 SPEDAT(SET,FACETDAT,NUMOBJ,I,5)
 SPEDAT(SET,GXMONI,PLOTALL,L,T)
 SPEDAT(SET,OBJNAM,!BLINL,C,INLETL)
 SPEDAT(SET,OBJTYP,!BLINL,C,USER_DEFINED)
 SPEDAT(SET,OBJNAM,^BLINE,C,INLETE)
 SPEDAT(SET,OBJTYP,^BLINE,C,USER_DEFINED)
 SPEDAT(SET,OBJNAM,!OB1,C,OUTLET)
 SPEDAT(SET,OBJTYP,!OB1,C,OUTLET)
 SPEDAT(SET,ARATIO,!OB1,R,1.)
 SPEDAT(SET,OBJNAM,!OB2,C,GROUND)
 SPEDAT(SET,OBJTYP,!OB2,C,PLATE)
 SPEDAT(SET,OBJNAM,!OB4,C,WBOUND)
 SPEDAT(SET,OBJTYP,!OB4,C,OUTLET)
 SPEDAT(SET,ARATIO,!OB4,R,1.)
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  Group 20. Preliminary Printout
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  Group 21. Print-out of Variables
 INIFLD = F ;SUBWGR = F
    * Y in OUTPUT argument list denotes:
    * 1-field 2-correction-eq. monitor 3-selective dumping      
    * 4-whole-field residual 5-spot-value table 6-residual table
 OUTPUT(P1,Y,N,Y,Y,Y,Y)
 OUTPUT(U1,Y,N,Y,Y,Y,Y)
 OUTPUT(V1,Y,N,Y,Y,Y,Y)
 OUTPUT(W1,Y,N,Y,Y,Y,Y)
 OUTPUT(KE,Y,N,Y,Y,Y,Y)
 OUTPUT(EP,Y,N,Y,Y,Y,Y)
 OUTPUT(EL1,Y,N,Y,N,N,N)
 OUTPUT(ENUT,Y,N,Y,N,N,N)
 OUTPUT(EPKE,Y,N,Y,N,N,N)
 ************************************************************
  Group 22. Monitor Print-Out
 IXMON = 1 ;IYMON = 3 ;IZMON = 13
 NPRMON = 100000 ;NPRMNT = 1 ;TSTSWP = -1
 UWATCH = T ;USTEER = T
 HIGHLO = F
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  Group 23.Field Print-Out & Plot Control
 NPRINT = 100000 ;NUMCLS = 5
 NXPRIN = -1 ;IXPRF = 1 ;IXPRL = 10000
 NYPRIN = -1 ;IYPRF = 1 ;IYPRL = 10000
 NZPRIN = 1 ;IZPRF = 1 ;IZPRL = 10000
 XZPR = T ;YZPR = F
 IPLTF = 1 ;IPLTL = -1 ;NPLT = -1
 ISWPRF = 1 ;ISWPRL = 100000
 ITABL = 2 ;IPROF = 1
 ABSIZ =0.5 ;ORSIZ =0.4
 NTZPRF = 1 ;NCOLPF = 50
 ICHR = 2 ;NCOLCO = 45 ;NROWCO = 20
   No PATCHes yet used for this Group
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  Group 24. Dumps For Restarts
 SAVE = T ;NOWIPE = F
 NSAVE =CHAM
STOP