| 1 | MODULE cv3_buoy_mod |
|---|
| 2 | PRIVATE |
|---|
| 3 | |
|---|
| 4 | PUBLIC cv3_buoy |
|---|
| 5 | |
|---|
| 6 | CONTAINS |
|---|
| 7 | |
|---|
| 8 | SUBROUTINE cv3_buoy(nloc, ncum, nd, icb, inb, pbase, plcl, p, ph, ale, cin, & |
|---|
| 9 | tv, tvp, buoy) |
|---|
| 10 | ! ************************************************************** |
|---|
| 11 | ! * |
|---|
| 12 | ! CV3_BUOY * |
|---|
| 13 | ! Buoyancy corrections to account for ALE * |
|---|
| 14 | ! * |
|---|
| 15 | ! written by : MOREAU Cecile, 07/08/2003, 15.55.48 * |
|---|
| 16 | ! modified by : * |
|---|
| 17 | ! ************************************************************** |
|---|
| 18 | |
|---|
| 19 | USE yomcst2_mod_h |
|---|
| 20 | USE lmdz_cv_ini, ONLY : grav,nl |
|---|
| 21 | IMPLICIT NONE |
|---|
| 22 | |
|---|
| 23 | |
|---|
| 24 | ! input: |
|---|
| 25 | INTEGER ncum, nd, nloc |
|---|
| 26 | INTEGER icb(nloc), inb(nloc) |
|---|
| 27 | REAL pbase(nloc), plcl(nloc) |
|---|
| 28 | REAL p(nloc, nd), ph(nloc, nd+1) |
|---|
| 29 | REAL ale(nloc), cin(nloc) |
|---|
| 30 | REAL tv(nloc, nd), tvp(nloc, nd) |
|---|
| 31 | |
|---|
| 32 | ! output: |
|---|
| 33 | REAL buoy(nloc, nd) |
|---|
| 34 | |
|---|
| 35 | ! local variables: |
|---|
| 36 | INTEGER il, k |
|---|
| 37 | INTEGER kmx(nloc) |
|---|
| 38 | REAL bll(nloc), bmx(nloc) |
|---|
| 39 | REAL gamma(nloc) |
|---|
| 40 | LOGICAL ok(nloc) |
|---|
| 41 | |
|---|
| 42 | REAL dgamma |
|---|
| 43 | REAL buoymin |
|---|
| 44 | PARAMETER (dgamma=2.E-03) !dgamma gamma |
|---|
| 45 | PARAMETER (buoymin=2.) |
|---|
| 46 | |
|---|
| 47 | LOGICAL, PARAMETER :: fixed_bll = .TRUE. |
|---|
| 48 | |
|---|
| 49 | ! print *,' Ale+cin ',ale(1)+cin(1) |
|---|
| 50 | ! -------------------------------------------------------------- |
|---|
| 51 | ! Recompute buoyancies |
|---|
| 52 | ! -------------------------------------------------------------- |
|---|
| 53 | DO k = 1, nl |
|---|
| 54 | DO il = 1, ncum |
|---|
| 55 | buoy(il, k) = tvp(il, k) - tv(il, k) |
|---|
| 56 | END DO |
|---|
| 57 | END DO |
|---|
| 58 | |
|---|
| 59 | ! ------------------------------------------------------------- |
|---|
| 60 | ! -- Compute low level buoyancy ( function of Ale+Cin ) |
|---|
| 61 | ! ------------------------------------------------------------- |
|---|
| 62 | IF (fixed_bll) THEN |
|---|
| 63 | |
|---|
| 64 | DO il = 1, ncum |
|---|
| 65 | bll(il) = 0.5 |
|---|
| 66 | END DO |
|---|
| 67 | ELSE |
|---|
| 68 | |
|---|
| 69 | DO il = 1, ncum |
|---|
| 70 | IF (ale(il)+cin(il)>0.) THEN |
|---|
| 71 | gamma(il) = 4.*buoy(il, icb(il))**2 + 8.*dgamma*(ale(il)+cin(il))*tv( & |
|---|
| 72 | il, icb(il))/grav |
|---|
| 73 | gamma(il) = max(gamma(il), 1.E-10) |
|---|
| 74 | END IF |
|---|
| 75 | END DO |
|---|
| 76 | |
|---|
| 77 | DO il = 1, ncum |
|---|
| 78 | IF (ale(il)+cin(il)>0.) THEN |
|---|
| 79 | bll(il) = 4.*dgamma*(ale(il)+cin(il))*tv(il, icb(il))/ & |
|---|
| 80 | (grav*(abs(buoy(il,icb(il))+0.5*sqrt(gamma(il))))) |
|---|
| 81 | END IF |
|---|
| 82 | END DO |
|---|
| 83 | |
|---|
| 84 | DO il = 1, ncum |
|---|
| 85 | IF (ale(il)+cin(il)>0.) THEN |
|---|
| 86 | bll(il) = min(bll(il), buoymin) |
|---|
| 87 | END IF |
|---|
| 88 | END DO |
|---|
| 89 | |
|---|
| 90 | END IF !(fixed_bll) |
|---|
| 91 | |
|---|
| 92 | |
|---|
| 93 | ! ------------------------------------------------------------- |
|---|
| 94 | ! --Get highest buoyancy among levels below LCL-200hPa |
|---|
| 95 | ! ------------------------------------------------------------- |
|---|
| 96 | |
|---|
| 97 | DO il = 1, ncum |
|---|
| 98 | bmx(il) = -1000. |
|---|
| 99 | kmx(il) = icb(il) |
|---|
| 100 | ok(il) = .TRUE. |
|---|
| 101 | END DO |
|---|
| 102 | |
|---|
| 103 | DO k = 1, nl |
|---|
| 104 | DO il = 1, ncum |
|---|
| 105 | IF (ale(il)+cin(il)>0. .AND. ok(il)) THEN |
|---|
| 106 | IF (k>icb(il) .AND. k<=inb(il)) THEN |
|---|
| 107 | ! c print *,'k,p(il,k),plcl(il)-200. ', |
|---|
| 108 | ! k,p(il,k),plcl(il)-200. |
|---|
| 109 | IF (p(il,k)>plcl(il)-200.) THEN |
|---|
| 110 | IF (buoy(il,k)>bmx(il)) THEN |
|---|
| 111 | bmx(il) = buoy(il, k) |
|---|
| 112 | kmx(il) = k |
|---|
| 113 | IF (bmx(il)>=bll(il)) ok(il) = .FALSE. |
|---|
| 114 | END IF |
|---|
| 115 | END IF |
|---|
| 116 | END IF |
|---|
| 117 | END IF |
|---|
| 118 | END DO |
|---|
| 119 | END DO |
|---|
| 120 | |
|---|
| 121 | ! print *,' ==cv3_buoy== bll(1),bmx(1),icb(1),kmx(1) ' |
|---|
| 122 | ! $ ,bll(1),bmx(1),icb(1),kmx(1) |
|---|
| 123 | |
|---|
| 124 | ! ------------------------------------------------------------- |
|---|
| 125 | ! --Calculate modified buoyancies |
|---|
| 126 | ! ------------------------------------------------------------- |
|---|
| 127 | |
|---|
| 128 | DO il = 1, ncum |
|---|
| 129 | IF (ale(il)+cin(il)>0.) THEN |
|---|
| 130 | bll(il) = min(bll(il), bmx(il)) |
|---|
| 131 | END IF |
|---|
| 132 | END DO |
|---|
| 133 | |
|---|
| 134 | DO k = 1, nl |
|---|
| 135 | DO il = 1, ncum |
|---|
| 136 | IF (ale(il)+cin(il)>0.) THEN |
|---|
| 137 | IF (k>=icb(il) .AND. k<=kmx(il)-1) THEN |
|---|
| 138 | buoy(il, k) = bll(il) |
|---|
| 139 | END IF |
|---|
| 140 | END IF |
|---|
| 141 | END DO |
|---|
| 142 | END DO |
|---|
| 143 | |
|---|
| 144 | !CR:Correction of buoy for what comes next |
|---|
| 145 | !keep flag or to modify in all cases? |
|---|
| 146 | IF (iflag_mix_adiab.eq.1) THEN |
|---|
| 147 | DO k = 1, nl |
|---|
| 148 | DO il = 1, ncum |
|---|
| 149 | IF ((k>=kmx(il)) .AND. (k<=inb(il)) .AND. (buoy(il,k).lt.0.)) THEN |
|---|
| 150 | buoy(il,k)=buoy(il,k-1) |
|---|
| 151 | END IF |
|---|
| 152 | ENDDO |
|---|
| 153 | ENDDO |
|---|
| 154 | ENDIF |
|---|
| 155 | |
|---|
| 156 | RETURN |
|---|
| 157 | END SUBROUTINE cv3_buoy |
|---|
| 158 | |
|---|
| 159 | END MODULE cv3_buoy_mod |
|---|