| 1 | SUBROUTINE vdif_cd( ngrid,nlay,pz0,pg,pz,pu,pv,pts,ph,pcdv,pcdh) |
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| 2 | IMPLICIT NONE |
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| 3 | c======================================================================= |
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| 4 | c |
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| 5 | c Subject: computation of the surface drag coefficient using the |
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| 6 | c ------- approch developed by Loui for ECMWF. |
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| 7 | c |
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| 8 | c Author: Frederic Hourdin 15 /10 /93 |
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| 9 | c ------- |
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| 10 | c |
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| 11 | c Arguments: |
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| 12 | c ---------- |
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| 13 | c |
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| 14 | c inputs: |
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| 15 | c ------ |
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| 16 | c ngrid size of the horizontal grid |
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| 17 | c pg gravity (m s -2) |
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| 18 | c pz(ngrid) height of the first atmospheric layer |
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| 19 | c pu(ngrid) u component of the wind in that layer |
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| 20 | c pv(ngrid) v component of the wind in that layer |
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| 21 | c pts(ngrid) surfacte temperature |
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| 22 | c ph(ngrid) potential temperature T*(p/ps)^kappa |
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| 23 | c |
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| 24 | c outputs: |
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| 25 | c -------- |
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| 26 | c pcdv(ngrid) Cd for the wind |
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| 27 | c pcdh(ngrid) Cd for potential temperature |
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| 28 | c |
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| 29 | c======================================================================= |
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| 30 | c |
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| 31 | c----------------------------------------------------------------------- |
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| 32 | c Declarations: |
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| 33 | c ------------- |
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| 34 | |
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| 35 | c Arguments: |
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| 36 | c ---------- |
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| 37 | |
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| 38 | INTEGER ngrid,nlay |
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| 39 | REAL pz0 |
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| 40 | REAL pg,pz(ngrid,nlay) |
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| 41 | REAL pu(ngrid,nlay),pv(ngrid,nlay) |
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| 42 | REAL pts(ngrid,nlay),ph(ngrid,nlay) |
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| 43 | REAL pcdv(ngrid),pcdh(ngrid) |
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| 44 | |
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| 45 | c Local: |
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| 46 | c ------ |
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| 47 | |
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| 48 | INTEGER ig |
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| 49 | |
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| 50 | REAL zu2,z1,zri,zcd0,zz |
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| 51 | |
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| 52 | REAL karman,b,c,d,c2b,c3bc,c3b,umin2 |
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| 53 | LOGICAL firstcal |
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| 54 | DATA karman,b,c,d,umin2/.4,5.,5.,5.,1.e-12/ |
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| 55 | DATA firstcal/.true./ |
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| 56 | SAVE b,c,d,karman,c2b,c3bc,c3b,firstcal,umin2 |
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| 57 | |
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| 58 | c----------------------------------------------------------------------- |
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| 59 | c couche de surface: |
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| 60 | c ------------------ |
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| 61 | |
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| 62 | c DO ig=1,ngrid |
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| 63 | c zu2=pu(ig)*pu(ig)+pv(ig)*pv(ig)+umin2 |
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| 64 | c pcdv(ig)=pz0*(1.+sqrt(zu2)) |
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| 65 | c pcdh(ig)=pcdv(ig) |
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| 66 | c ENDDO |
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| 67 | c RETURN |
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| 68 | c |
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| 69 | c IF (firstcal) THEN |
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| 70 | c c2b=2.*b |
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| 71 | c c3bc=3.*b*c |
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| 72 | c c3b=3.*b |
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| 73 | c firstcal=.false. |
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| 74 | c ENDIF |
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| 75 | c |
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| 76 | c!!!! WARNING, verifier la formule originale de Louis! |
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| 77 | c DO ig=1,ngrid |
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| 78 | c zu2=pu(ig)*pu(ig)+pv(ig)*pv(ig)+umin2 |
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| 79 | c zri=pg*pz(ig)*(ph(ig)-pts(ig))/(ph(ig)*zu2) |
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| 80 | c._. |
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| 81 | c zri=0.E+0 |
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| 82 | c._. |
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| 83 | c z1=1.+pz(ig)/pz0 |
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| 84 | c zcd0=karman/log(z1) |
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| 85 | c._. zcd0=zcd0*zcd0*sqrt(zu2) |
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| 86 | c zcd0=zcd0*zcd0 |
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| 87 | c IF(zri.LT.0.) THEN |
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| 88 | c._. z1=b*zri/(1.+c3bc*zcd0*sqrt(-z1*zri)) |
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| 89 | c z1=b*zri/(1.+c3bc*zcd0*sqrt(-z1*zri*zu2)) |
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| 90 | c pcdv(ig)=zcd0*(1.-2.*z1) |
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| 91 | c pcdh(ig)=zcd0*(1.-3.*z1) |
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| 92 | c ELSE |
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| 93 | c zz=sqrt(1.+d*zri) |
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| 94 | c pcdv(ig)=zcd0/(1.+c2b*zri/zz) |
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| 95 | c pcdh(ig)=zcd0/(1.+c3b*zri*zz) |
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| 96 | c ENDIF |
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| 97 | c ENDDO |
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| 98 | |
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| 99 | |
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| 100 | c On calcule un VRAI cdrag tout bete |
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| 101 | |
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| 102 | DO ig=1,ngrid |
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| 103 | z1=1.E+0 + pz(ig,1)/pz0 |
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| 104 | zcd0=karman/log(z1) |
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| 105 | zcd0=zcd0*zcd0 |
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| 106 | pcdv(ig)=zcd0 |
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| 107 | pcdh(ig)=zcd0 |
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| 108 | ENDDO |
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| 109 | |
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| 110 | |
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| 111 | |
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| 112 | |
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| 113 | c----------------------------------------------------------------------- |
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| 114 | |
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| 115 | RETURN |
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| 116 | END |
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