| 1 | MODULE soil_settings_PEM_mod |
|---|
| 2 | |
|---|
| 3 | implicit none |
|---|
| 4 | |
|---|
| 5 | !======================================================================= |
|---|
| 6 | contains |
|---|
| 7 | !======================================================================= |
|---|
| 8 | |
|---|
| 9 | SUBROUTINE soil_settings_PEM(ngrid,nslope,nsoil_PEM,nsoil_GCM,TI_GCM,TI_PEM) |
|---|
| 10 | |
|---|
| 11 | ! use netcdf |
|---|
| 12 | use comsoil_h_PEM, only: layer_PEM, mlayer_PEM, depth_breccia, depth_bedrock, index_breccia, index_bedrock |
|---|
| 13 | use comsoil_h, only: inertiedat, layer, mlayer, volcapa |
|---|
| 14 | |
|---|
| 15 | use iostart, only: inquire_field_ndims, get_var, get_field, inquire_field, inquire_dimension_length |
|---|
| 16 | |
|---|
| 17 | implicit none |
|---|
| 18 | |
|---|
| 19 | !======================================================================= |
|---|
| 20 | ! Author: LL, based on work by Ehouarn Millour (07/2006) |
|---|
| 21 | ! |
|---|
| 22 | ! Purpose: Read and/or initialise soil depths and properties |
|---|
| 23 | ! |
|---|
| 24 | ! Modifications: Aug.2010 EM: use NetCDF90 to load variables (enables using |
|---|
| 25 | ! r4 or r8 restarts independently of having compiled |
|---|
| 26 | ! the GCM in r4 or r8) |
|---|
| 27 | ! June 2013 TN: Possibility to read files with a time axis |
|---|
| 28 | ! |
|---|
| 29 | ! The various actions and variable read/initialized are: |
|---|
| 30 | ! 1. Read/build layer (and midlayer) depth |
|---|
| 31 | ! 2. Interpolate thermal inertia and temperature on the new grid, if necessary |
|---|
| 32 | !======================================================================= |
|---|
| 33 | |
|---|
| 34 | !======================================================================= |
|---|
| 35 | ! arguments |
|---|
| 36 | ! --------- |
|---|
| 37 | ! inputs: |
|---|
| 38 | integer, intent(in) :: ngrid ! # of horizontal grid points |
|---|
| 39 | integer, intent(in) :: nslope ! # of subslope wihtin the mesh |
|---|
| 40 | integer, intent(in) :: nsoil_PEM ! # of soil layers in the PEM |
|---|
| 41 | integer, intent(in) :: nsoil_GCM ! # of soil layers in the GCM |
|---|
| 42 | real, dimension(ngrid,nsoil_GCM,nslope), intent(in) :: TI_GCM ! Thermal inertia in the GCM [SI] |
|---|
| 43 | |
|---|
| 44 | real, dimension(ngrid,nsoil_PEM,nslope), intent(inout) :: TI_PEM ! Thermal inertia in the PEM [SI] |
|---|
| 45 | !======================================================================= |
|---|
| 46 | ! local variables: |
|---|
| 47 | integer :: ig, iloop, islope ! loop counters |
|---|
| 48 | logical :: found |
|---|
| 49 | real :: alpha,lay1 ! coefficients for building layers |
|---|
| 50 | real :: xmin, xmax ! to display min and max of a field |
|---|
| 51 | !======================================================================= |
|---|
| 52 | ! 1. Depth coordinate |
|---|
| 53 | ! ------------------- |
|---|
| 54 | ! 1.4 Build mlayer(), if necessary |
|---|
| 55 | ! default mlayer distribution, following a power law: |
|---|
| 56 | ! mlayer(k)=lay1*alpha**(k-1/2) |
|---|
| 57 | lay1 = 2.e-4 |
|---|
| 58 | alpha = 2 |
|---|
| 59 | do iloop = 0,nsoil_PEM - 1 |
|---|
| 60 | mlayer_PEM(iloop) = lay1*(alpha**(iloop - 0.5)) |
|---|
| 61 | enddo |
|---|
| 62 | |
|---|
| 63 | ! 1.5 Build layer(); following the same law as mlayer() |
|---|
| 64 | ! Assuming layer distribution follows mid-layer law: |
|---|
| 65 | ! layer(k)=lay1*alpha**(k-1) |
|---|
| 66 | lay1 = sqrt(mlayer_PEM(0)*mlayer_PEM(1)) |
|---|
| 67 | alpha = mlayer_PEM(1)/mlayer_PEM(0) |
|---|
| 68 | do iloop = 1,nsoil_PEM |
|---|
| 69 | layer_PEM(iloop) = lay1*(alpha**(iloop - 1)) |
|---|
| 70 | enddo |
|---|
| 71 | |
|---|
| 72 | ! 2. Thermal inertia (note: it is declared in comsoil_h) |
|---|
| 73 | ! ------------------ |
|---|
| 74 | do ig = 1,ngrid |
|---|
| 75 | do islope = 1,nslope |
|---|
| 76 | do iloop = 1,nsoil_GCM |
|---|
| 77 | TI_PEM(ig,iloop,islope) = TI_GCM(ig,iloop,islope) |
|---|
| 78 | enddo |
|---|
| 79 | if (nsoil_PEM > nsoil_GCM) then |
|---|
| 80 | do iloop = nsoil_GCM + 1,nsoil_PEM |
|---|
| 81 | TI_PEM(ig,iloop,islope) = TI_GCM(ig,nsoil_GCM,islope) |
|---|
| 82 | enddo |
|---|
| 83 | endif |
|---|
| 84 | enddo |
|---|
| 85 | enddo |
|---|
| 86 | |
|---|
| 87 | ! 3. Index for subsurface layering |
|---|
| 88 | ! ------------------ |
|---|
| 89 | index_breccia = 1 |
|---|
| 90 | do iloop = 1,nsoil_PEM - 1 |
|---|
| 91 | if (depth_breccia >= layer_PEM(iloop)) then |
|---|
| 92 | index_breccia = iloop |
|---|
| 93 | else |
|---|
| 94 | exit |
|---|
| 95 | endif |
|---|
| 96 | enddo |
|---|
| 97 | |
|---|
| 98 | index_bedrock = 1 |
|---|
| 99 | do iloop = 1,nsoil_PEM - 1 |
|---|
| 100 | if (depth_bedrock >= layer_PEM(iloop)) then |
|---|
| 101 | index_bedrock = iloop |
|---|
| 102 | else |
|---|
| 103 | exit |
|---|
| 104 | endif |
|---|
| 105 | enddo |
|---|
| 106 | |
|---|
| 107 | END SUBROUTINE soil_settings_PEM |
|---|
| 108 | |
|---|
| 109 | END MODULE soil_settings_PEM_mod |
|---|