4 SUBROUTINE coefcdrag (klon, knon, nsrf, zxli, &
5 speed, t, q, zgeop, psol, &
6 ts, qsurf, rugos, okri, ri1, &
7 cdram, cdrah, cdran, zri1, pref)
43 INTEGER,
intent(in) :: klon, knon, nsrf
44 LOGICAL,
intent(in) :: zxli
45 REAL,
dimension(klon),
intent(in) :: speed, t, q, zgeop, psol
46 REAL,
dimension(klon),
intent(in) :: ts, qsurf, rugos, ri1
47 LOGICAL,
intent(in) :: okri
49 REAL,
dimension(klon),
intent(out) :: cdram, cdrah, cdran, zri1, pref
56 REAL,
parameter :: RKAR=0.40, cb=5.0, cc=5.0, cd=5.0, cepdu2=(0.1)**2
60 REAL,
dimension(klon) :: zdu2, zdphi, ztsolv, ztvd
61 REAL,
dimension(klon) :: zscf, friv, frih, zucf, zcr
62 REAL,
dimension(klon) :: zcfm1, zcfh1
63 REAL,
dimension(klon) :: zcfm2, zcfh2
64 REAL,
dimension(klon) :: trm0, trm1
66 CHARACTER (LEN=80) :: abort_message
67 CHARACTER (LEN=20) :: modname =
'coefcdra'
75 fsta(x) = 1.0 / (1.0+10.0*x*(1+8.0*x))
76 fins(x) = sqrt(1.0-18.0*x)
79 abort_message=
'obsolete, remplace par cdrag, use at you own risk'
86 zdu2(i) = max(cepdu2,speed(i)**2)
87 pref(i) = exp(log(psol(i)) - zdphi(i)/(rd*t(i)* &
88 (1.+ retv * max(q(i),0.0))))
93 ztvd(i) = (t(i)+zdphi(i)/rcpd/(1.+rvtmp2*q(i)))
94 trm0(i) = 1. + retv * max(qsurf(i),0.0)
95 trm1(i) = 1. + retv * max(q(i),0.0)
96 ztsolv(i) = ztsolv(i) * trm0(i)
97 ztvd(i) = ztvd(i) * trm1(i)
98 zri1(i) = zdphi(i)*(ztvd(i)-ztsolv(i))/(zdu2(i)*ztvd(i))
105 IF (ri1(i).GE.0.0.AND.zri1(i).LT.0.0)
THEN
107 ELSE IF(ri1(i).LT.0.0.AND.zri1(i).GE.0.0)
THEN
114 cdran(i) = (rkar/log(1.+zdphi(i)/(
rg*rugos(i))))**2
116 IF (zri1(i) .ge. 0.)
THEN
121 zri1(i) = min(20.,zri1(i))
124 zscf(i) = sqrt(1.+cd*abs(zri1(i)))
125 friv(i) = max(1. / (1.+2.*cb*zri1(i)/ zscf(i)), f_ri_cd_min)
126 zcfm1(i) = cdran(i) * friv(i)
127 frih(i) = max(1./ (1.+3.*cb*zri1(i)*zscf(i)), f_ri_cd_min )
129 zcfh1(i) = f_cdrag_ter*cdran(i) * frih(i)
130 IF(nsrf.EQ.
is_oce) zcfh1(i)=f_cdrag_oce*cdran(i)*frih(i)
134 cdram(i) = cdran(i)* fsta(zri1(i))
135 cdrah(i) = cdran(i)* fsta(zri1(i))
143 zucf(i) = 1./(1.+3.0*cb*cc*cdran(i)*sqrt(abs(zri1(i)) &
144 *(1.0+zdphi(i)/(
rg*rugos(i)))))
145 zcfm2(i) = cdran(i)*max((1.-2.0*cb*zri1(i)*zucf(i)),f_ri_cd_min)
147 zcfh2(i) = f_cdrag_ter*cdran(i)*max((1.-3.0*cb*zri1(i)*zucf(i)),f_ri_cd_min)
151 cdram(i) = cdran(i)* fins(zri1(i))
152 cdrah(i) = cdran(i)* fins(zri1(i))
157 zcr(i) = (0.0016/(cdran(i)*sqrt(zdu2(i))))*abs(ztvd(i)-ztsolv(i)) &
161 IF (nsrf.EQ.
is_oce) cdrah(i)=f_cdrag_oce*cdran(i)*(1.0+zcr(i)**1.25) &
subroutine coefcdrag(klon, knon, nsrf, zxli, speed, t, q, zgeop, psol, ts, qsurf, rugos, okri, ri1, cdram, cdrah, cdran, zri1, pref)
subroutine abort_physic(modname, message, ierr)
integer, parameter is_oce