[485] | 1 | c IF (ok_mensuelNMC) THEN |
---|
| 2 | IF (ok_mensuel) THEN |
---|
| 3 | c |
---|
| 4 | IF(region.EQ.'3d') THEN |
---|
| 5 | zsto = dtime |
---|
[508] | 6 | cIM 150304 BEG |
---|
[485] | 7 | zout = dtime * ecrit_mth |
---|
[508] | 8 | c zout = dtime * REAL(NINT(86400./dtime*ecrit_hf)) |
---|
| 9 | cIM 150304 END |
---|
| 10 | cIM 120304 BEG |
---|
| 11 | c zout = dtime * REAL(NINT(86400./dtime*ecrit_hf)) |
---|
| 12 | c zsto = zout |
---|
| 13 | c zsto = dtime |
---|
| 14 | cIM 120304 END |
---|
[485] | 15 | ELSEIF(region.EQ.'1d') THEN |
---|
| 16 | zsto = dtime |
---|
| 17 | c zout = dtime |
---|
| 18 | zout = dtime *4. |
---|
| 19 | ENDIF |
---|
| 20 | c |
---|
| 21 | idayref = day_ref |
---|
| 22 | CALL ymds2ju(annee_ref, 1, idayref, 0.0, zjulian) |
---|
| 23 | c |
---|
| 24 | CALL gr_fi_ecrit(1,klon,iim,jjmp1,rlon,zx_lon) |
---|
| 25 | DO i = 1, iim |
---|
| 26 | zx_lon(i,1) = rlon(i+1) |
---|
| 27 | zx_lon(i,jjmp1) = rlon(i+1) |
---|
| 28 | ENDDO |
---|
| 29 | DO ll=1,klev |
---|
| 30 | znivsig(ll)=float(ll) |
---|
| 31 | ENDDO |
---|
| 32 | CALL gr_fi_ecrit(1,klon,iim,jjmp1,rlat,zx_lat) |
---|
| 33 | CALL histbeg("histNMC.nc", iim,zx_lon(:,1), jjmp1,zx_lat(1,:), |
---|
| 34 | c071103 |
---|
| 35 | c . 1,iim,1,jjmp1, |
---|
| 36 | . imin_debut,nbpti, |
---|
| 37 | . jmin_debut,nbptj, |
---|
| 38 | c071103 |
---|
| 39 | . itau_phy, zjulian, dtime, |
---|
| 40 | . nhori, nid_nmc) |
---|
| 41 | write(*,*)'Mensuel NMC ', itau_phy, zjulian |
---|
| 42 | CALL histvert(nid_nmc, "presnivs", "Vertical levels", "mb", |
---|
| 43 | . klev, presnivs, nvert) |
---|
| 44 | c call histvert(nid_nmc, 'sig_s', 'Niveaux sigma','-', |
---|
| 45 | c . klev, znivsig, nvert) |
---|
| 46 | c |
---|
| 47 | c Champs 2D: |
---|
| 48 | |
---|
| 49 | c Champs interpolles sur des niveaux de pression du NMC |
---|
[508] | 50 | c IMIMIM 110304 BEG |
---|
[485] | 51 | c |
---|
[508] | 52 | DO k=1, nlevSTD |
---|
[485] | 53 | c |
---|
[508] | 54 | bb=clevSTD(k) |
---|
[485] | 55 | c |
---|
[508] | 56 | IF(k.GE.2) THEN |
---|
| 57 | aa=clevSTD(k) |
---|
| 58 | bb=aa(1:lnblnk1(aa)) |
---|
| 59 | ENDIF |
---|
[485] | 60 | c |
---|
[508] | 61 | CALL histdef(nid_nmc, "t"//bb, |
---|
| 62 | . "Temperature"//bb//"mb","K", |
---|
[485] | 63 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 64 | . "ave(X)", zsto,zout) |
---|
| 65 | c |
---|
[508] | 66 | CALL histdef(nid_nmc, "phi"//bb, |
---|
| 67 | . "Geopotential"//bb//"mb", "m2/s2", |
---|
[485] | 68 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 69 | . "ave(X)", zsto,zout) |
---|
| 70 | c |
---|
[508] | 71 | CALL histdef(nid_nmc, "q"//bb, |
---|
| 72 | . "Specific humidity"//bb//"mb","kg/kg", |
---|
[485] | 73 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 74 | . "ave(X)", zsto,zout) |
---|
| 75 | c |
---|
[508] | 76 | CALL histdef(nid_nmc, "rh"//bb, |
---|
| 77 | . "Relative humidity"//bb//"mb", "%", |
---|
[485] | 78 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 79 | . "ave(X)", zsto,zout) |
---|
| 80 | c |
---|
[508] | 81 | CALL histdef(nid_nmc, "u"//bb, |
---|
| 82 | . "Zonal wind"//bb//"mb","K", |
---|
[485] | 83 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 84 | . "ave(X)", zsto,zout) |
---|
| 85 | c |
---|
[508] | 86 | CALL histdef(nid_nmc, "v"//bb, |
---|
| 87 | . "Meridional wind"//bb//"mb","K", |
---|
[485] | 88 | . iim,jjmp1,nhori, 1,1,1, -99, 32, |
---|
| 89 | . "ave(X)", zsto,zout) |
---|
| 90 | c |
---|
[508] | 91 | ENDDO !nlevSTD |
---|
| 92 | c IMIMIM 110304 END |
---|
[485] | 93 | |
---|
| 94 | CALL histend(nid_nmc) |
---|
| 95 | c |
---|
| 96 | c ndex2d = 0 |
---|
| 97 | c |
---|
| 98 | ENDIF ! fin de test sur ok_mensuel |
---|
| 99 | |
---|