[2896] | 1 | MODULE comslope_mod |
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| 2 | !======================================================================================================================! |
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| 3 | ! Subject: |
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| 4 | !--------- |
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| 5 | ! Module used for the parametrization of subgrid scale slope |
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| 6 | !----------------------------------------------------------------------------------------------------------------------! |
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| 7 | ! Reference: |
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| 8 | !----------- |
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| 9 | ! Lange et al. (2023 in prep.), 'Introduction of Sub-Grid Scale Slope Microclimates in the Mars Planetary Climate Model', JGR |
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| 10 | ! |
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| 11 | !======================================================================================================================! |
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| 12 | |
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| 13 | IMPLICIT NONE |
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| 14 | |
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[2900] | 15 | INTEGER, SAVE :: nslope ! Number of slopes for the statistic (1) |
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[2896] | 16 | INTEGER, SAVE :: iflat ! Number of slopes for the statistic (1) |
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| 17 | REAL,SAVE,ALLOCATABLE,DIMENSION(:) :: def_slope ! bound of the slope statistics / repartitions (°) |
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| 18 | REAL,SAVE,ALLOCATABLE,DIMENSION(:) :: def_slope_mean ! mean slope of each bin (°) |
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| 19 | REAL,SAVE,ALLOCATABLE,DIMENSION(:) :: sky_slope ! portion of the sky view by each slopes (1) |
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| 20 | REAL,SAVE,ALLOCATABLE,DIMENSION(:,:) :: subslope_dist ! distribution of the slopes (1) |
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| 21 | INTEGER,SAVE,ALLOCATABLE,DIMENSION(:) :: major_slope ! Index of the subslope that occupies most of themesh (1) |
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[2900] | 22 | !$OMP THREADPRIVATE(nslope,def_slope,def_slope_mean,sky_slope,subslope_dist,iflat,major_slope) |
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[2896] | 23 | |
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| 24 | CONTAINS |
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[2909] | 25 | SUBROUTINE ini_comslope_h(ngrid,nslope_in) |
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[2896] | 26 | |
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| 27 | IMPLICIT NONE |
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| 28 | INTEGER, INTENT(IN) :: ngrid |
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[2909] | 29 | INTEGER, INTENT(IN) :: nslope_in |
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[2896] | 30 | |
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[2909] | 31 | allocate(def_slope(nslope_in+1)) |
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| 32 | allocate(def_slope_mean(nslope_in)) |
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| 33 | allocate(sky_slope(nslope_in)) |
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| 34 | allocate(subslope_dist(ngrid,nslope_in)) |
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[2896] | 35 | allocate(major_slope(ngrid)) |
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| 36 | END SUBROUTINE ini_comslope_h |
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| 37 | |
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| 38 | |
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| 39 | SUBROUTINE end_comslope_h |
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| 40 | |
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| 41 | IMPLICIT NONE |
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| 42 | |
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| 43 | IF (allocated(def_slope)) deallocate(def_slope) |
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| 44 | IF (allocated(def_slope_mean)) deallocate(def_slope_mean) |
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| 45 | IF (allocated(sky_slope)) deallocate(sky_slope) |
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| 46 | IF (allocated(subslope_dist)) deallocate(subslope_dist) |
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| 47 | IF (allocated(major_slope)) deallocate(major_slope) |
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| 48 | |
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| 49 | END SUBROUTINE end_comslope_h |
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| 50 | |
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| 51 | SUBROUTINE compute_meshgridavg(ngrid,nq,albedo_slope,emis_slope,tsurf_slope,qsurf_slope,albedo_meshavg,emis_meshavg,tsurf_meshavg, qsurf_meshavg) |
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| 52 | USE comcstfi_h, only: pi |
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| 53 | IMPLICIT NONE |
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| 54 | INTEGER, INTENT(IN) :: ngrid,nq ! # points on the physical grid, tracers (1) |
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| 55 | REAL, INTENT(IN) :: albedo_slope(ngrid,2,nslope) ! albedo on each sub-grid slope (1) |
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| 56 | REAL, INTENT(IN) :: emis_slope(ngrid,nslope) ! emissivity on each sub-grid slope (1) |
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| 57 | REAL, INTENT(IN) :: tsurf_slope(ngrid,nslope) ! Surface Temperature on each sub-grid slope (K) |
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| 58 | REAL, INTENT(IN) :: qsurf_slope(ngrid,nq,nslope) ! Surface Tracers on each sub-grid slope (kg/m^2 sloped) |
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| 59 | REAL, INTENT(OUT) :: albedo_meshavg(ngrid,2) ! grid box average of the albedo (1) |
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| 60 | REAL, INTENT(OUT) :: emis_meshavg(ngrid) ! grid box average of the emissivity (1) |
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| 61 | REAL, INTENT(OUT) :: tsurf_meshavg(ngrid) ! grid box average of the surface temperature (K) |
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| 62 | REAL, INTENT(OUT) :: qsurf_meshavg(ngrid,nq) ! grid box average of the surface tracers (kg/m^2 flat) |
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| 63 | ! Local |
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| 64 | integer :: islope,ig,l,iq |
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| 65 | |
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| 66 | !------------------- |
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| 67 | |
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| 68 | albedo_meshavg(:,:) = 0. |
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| 69 | emis_meshavg(:) = 0. |
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| 70 | tsurf_meshavg(:) = 0. |
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| 71 | qsurf_meshavg(:,:) = 0. |
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| 72 | |
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[2909] | 73 | if(nslope.eq.1) then |
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| 74 | albedo_meshavg(:,:) = albedo_slope(:,:,1) |
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| 75 | emis_meshavg(:) = emis_slope(:,1) |
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| 76 | tsurf_meshavg(:) = tsurf_slope(:,1) |
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| 77 | qsurf_meshavg(:,:) = qsurf_slope(:,:,1) |
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| 78 | else |
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| 79 | |
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[2896] | 80 | DO ig = 1,ngrid |
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| 81 | DO islope = 1,nslope |
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| 82 | DO l = 1,2 |
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| 83 | albedo_meshavg(ig,l) = albedo_meshavg(ig,l) + albedo_slope(ig,l,islope)*subslope_dist(ig,islope) |
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| 84 | ENDDO |
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| 85 | DO iq = 1,nq |
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| 86 | qsurf_meshavg(ig,iq) = qsurf_meshavg(ig,iq) + qsurf_slope(ig,iq,islope)*subslope_dist(ig,islope)/cos(def_slope_mean(islope)*pi/180.) |
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| 87 | ENDDO |
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| 88 | emis_meshavg(ig) = emis_meshavg(ig) + emis_slope(ig,islope)*subslope_dist(ig,islope) |
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| 89 | tsurf_meshavg(ig) = tsurf_meshavg(ig) + (emis_slope(ig,islope)*tsurf_slope(ig,islope)**4)*subslope_dist(ig,islope) |
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| 90 | ENDDO |
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| 91 | tsurf_meshavg(ig) = (tsurf_meshavg(ig)/emis_meshavg(ig))**(0.25) |
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| 92 | ENDDO |
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| 93 | |
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[2909] | 94 | endif |
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| 95 | |
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[2896] | 96 | END SUBROUTINE compute_meshgridavg |
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| 97 | |
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| 98 | END MODULE comslope_mod |
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