Last change
on this file since 2757 was
1523,
checked in by emillour, 9 years ago
|
All models: More updates to make planetary codes (+Earth) setups converge.
- in dyn3d_common:
- convmas.F => convmas.F90
- enercin.F => enercin.F90
- flumass.F => flumass.F90
- massbar.F => massbar.F90
- tourpot.F => tourpot.F90
- vitvert.F => vitvert.F90
- in misc:
- move "q_sat" from "dyn3d_common" to "misc" (in Earth model, it is also called
by the physics)
- move "write_field" from "dyn3d_common" to "misc"(may be called from physics
or dynamics and depends on neither).
- in phy_common:
- move "write_field_phy" here since it may be called from any physics package)
- add module "regular_lonlat_mod" to store global information on lon-lat grid
- in dynlonlat_phylonlat/phy*:
- turn "iniphysiq.F90" into module "iniphysiq_mod.F90"
(and of course adapt gcm.F[90] and 1D models accordingly)
EM
|
File size:
1.1 KB
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1 | SUBROUTINE massbarxy(masse,massebxy) |
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2 | ! |
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3 | !------------------------------------------------------------------------------- |
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4 | ! Authors: P. Le Van , Fr. Hourdin. |
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5 | !------------------------------------------------------------------------------- |
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6 | ! Purpose: Compute air mass mean along X and Y in each cell. |
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7 | ! See iniconst for more details. |
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8 | IMPLICIT NONE |
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9 | include "dimensions.h" |
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10 | include "paramet.h" |
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11 | include "comgeom.h" |
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12 | !=============================================================================== |
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13 | ! Arguments: |
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14 | REAL, INTENT(IN) :: masse (ip1jmp1,llm) |
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15 | REAL, INTENT(OUT) :: massebxy(ip1jm ,llm) |
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16 | !=============================================================================== |
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17 | ! Local variables: |
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18 | INTEGER :: ij, l |
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19 | !=============================================================================== |
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20 | DO l=1,llm |
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21 | DO ij=1,ip1jm-1 |
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22 | massebxy(ij,l)=masse(ij ,l)*alpha2(ij ) + & |
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23 | masse(ij+1 ,l)*alpha3(ij+1 ) + & |
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24 | masse(ij+iip1,l)*alpha1(ij+iip1) + & |
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25 | masse(ij+iip2,l)*alpha4(ij+iip2) |
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26 | END DO |
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27 | DO ij=iip1,ip1jm,iip1; massebxy(ij,l)=massebxy(ij-iim,l); END DO |
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28 | END DO |
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29 | |
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30 | END SUBROUTINE massbarxy |
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