| 1 | subroutine soil_settings(nid,ngrid,nsoil,nqsoil,tsurf,tsoil, |
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| 2 | & qsoil,indextime) |
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| 3 | |
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| 4 | ! use netcdf |
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| 5 | use comsoil_h, only: layer, mlayer, inertiedat, inertiesoil, |
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| 6 | & volcapa,flux_geo,adsorption_soil, |
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| 7 | & igcm_h2o_vap_soil,igcm_h2o_ice_soil, |
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| 8 | & igcm_h2o_vap_ads |
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| 9 | use iostart, only: inquire_field_ndims, get_var, get_field, |
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| 10 | & inquire_field, inquire_dimension_length |
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| 11 | USE comslope_mod, ONLY: nslope |
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| 12 | implicit none |
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| 13 | |
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| 14 | !====================================================================== |
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| 15 | ! Author: Ehouarn Millour (07/2006) |
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| 16 | ! |
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| 17 | ! Purpose: Read and/or initialise soil depths and properties |
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| 18 | ! |
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| 19 | ! Modifications: Aug.2010 EM : use NetCDF90 to load variables (enables using |
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| 20 | ! r4 or r8 restarts independently of having compiled |
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| 21 | ! the GCM in r4 or r8) |
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| 22 | ! June 2013 TN : Possibility to read files with a time axis |
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| 23 | ! |
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| 24 | ! |
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| 25 | ! This subroutine reads from a NetCDF file (opened by the caller) |
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| 26 | ! of "startfi.nc" format. |
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| 27 | ! The various actions and variable read/initialized are: |
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| 28 | ! 1. Check out the number of soil layers (in datafile); if it isn't equal |
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| 29 | ! to nsoil, then some interpolation will be required |
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| 30 | ! Also check if data in file "startfi.nc" is in older format (ie: |
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| 31 | ! thermal inertia was depth-independent; and there was no "depth" |
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| 32 | ! coordinate. |
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| 33 | ! Read/build layer (and midlayer) depths |
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| 34 | ! 2. Read volumetric specific heat (or initialise it to default value) |
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| 35 | ! 3. Read Thermal inertia |
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| 36 | ! 4. Read soil temperatures |
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| 37 | ! 5. Interpolate thermal inertia and temperature on the new grid, if |
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| 38 | ! necessary |
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| 39 | !====================================================================== |
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| 40 | |
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| 41 | !====================================================================== |
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| 42 | ! arguments |
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| 43 | ! --------- |
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| 44 | ! inputs: |
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| 45 | integer,intent(in) :: nid ! Input Netcdf file ID |
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| 46 | integer,intent(in) :: ngrid ! # of horizontal grid points |
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| 47 | integer,intent(in) :: nsoil ! # of soil layers |
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| 48 | integer,intent(in) :: nqsoil ! # of tracers in the soil |
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| 49 | real,intent(in) :: tsurf(ngrid,nslope) ! surface temperature [K] |
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| 50 | integer,intent(in) :: indextime ! position on time axis |
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| 51 | ! output: |
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| 52 | real,intent(out) :: tsoil(ngrid,nsoil,nslope) ! soil temperature [K] |
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| 53 | real,intent(out) :: qsoil(ngrid,nsoil,nqsoil,nslope) ! Tracers in the subsurface [kg/kg] |
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| 54 | |
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| 55 | !====================================================================== |
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| 56 | ! local variables: |
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| 57 | integer ierr ! status (returned by NetCDF functions) |
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| 58 | integer nvarid ! ID of NetCDF variable |
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| 59 | integer dimid ! ID of NetCDF dimension |
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| 60 | integer dimlen ! length along the "depth" dimension |
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| 61 | integer ndims ! # of dimensions of read <inertiedat> data |
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| 62 | integer ig,iloop ! loop counters |
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| 63 | integer islope |
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| 64 | |
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| 65 | integer edges(3),corner(3) ! to read a specific time |
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| 66 | |
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| 67 | logical :: olddepthdef=.false. ! flag |
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| 68 | logical :: interpol=.false. ! flag: true if interpolation will be requiered |
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| 69 | |
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| 70 | ! to store "old" values |
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| 71 | real,dimension(:),allocatable :: surfinertia !surface thermal inertia |
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| 72 | real,dimension(:),allocatable :: oldmlayer |
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| 73 | real,dimension(:,:),allocatable :: oldinertiedat |
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| 74 | real,dimension(:,:,:),allocatable :: oldinertiesoil |
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| 75 | real,dimension(:,:,:),allocatable :: oldtsoil |
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| 76 | |
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| 77 | ! for interpolation |
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| 78 | real,dimension(:),allocatable :: oldgrid |
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| 79 | real,dimension(:),allocatable :: oldval |
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| 80 | real,dimension(:),allocatable :: newval |
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| 81 | |
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| 82 | real alpha,lay1 ! coefficients for building layers |
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| 83 | real xmin,xmax ! to display min and max of a field |
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| 84 | |
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| 85 | real,parameter :: default_volcapa=1.e6 |
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| 86 | |
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| 87 | logical :: found,ok |
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| 88 | |
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| 89 | character (len=30):: txt |
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| 90 | |
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| 91 | !====================================================================== |
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| 92 | |
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| 93 | ! 1. Depth coordinate |
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| 94 | ! ------------------- |
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| 95 | |
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| 96 | |
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| 97 | ! 1.1 Start by reading how many layers of soil there are |
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| 98 | |
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| 99 | dimlen=inquire_dimension_length("subsurface_layers") |
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| 100 | |
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| 101 | if (dimlen.ne.nsoil) then |
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| 102 | write(*,*)'soil_settings: Interpolation of soil temperature ', |
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| 103 | & 'and thermal inertia will be required!' |
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| 104 | ! if dimlen doesn't match nsoil, then interpolation of |
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| 105 | ! soil temperatures and thermal inertia will be requiered |
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| 106 | interpol=.true. |
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| 107 | ! allocate oldmlayer |
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| 108 | if (.not.allocated(oldmlayer)) then |
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| 109 | allocate(oldmlayer(dimlen),stat=ierr) |
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| 110 | if (ierr.ne.0) then |
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| 111 | write(*,*) 'soil_settings: failed allocation of oldmlayer!' |
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| 112 | call abort_physic("soil_settings", |
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| 113 | & "failed oldmlayer allocation",1) |
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| 114 | endif |
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| 115 | endif |
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| 116 | endif |
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| 117 | |
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| 118 | ! 1.2 Find out the # of dimensions <inertiedat> was defined as using |
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| 119 | ! (in ye old days, thermal inertia was only given at the "surface") |
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| 120 | |
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| 121 | ndims=inquire_field_ndims("inertiedat") |
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| 122 | |
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| 123 | ! 1.3 Read depths values or set olddepthdef flag and values |
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| 124 | if (ndims.eq.1) then ! we know that there is none |
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| 125 | write(*,*)'soil_settings: no <soildepth> field expected' |
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| 126 | write(*,*)'building one mimicking old definitions' |
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| 127 | olddepthdef=.true. |
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| 128 | interpol=.true. |
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| 129 | |
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| 130 | do iloop=1,dimlen |
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| 131 | oldmlayer(iloop)=sqrt(887.75/3.14)*((2.**(iloop-0.5))-1.) |
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| 132 | enddo |
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| 133 | else ! Look for depth |
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| 134 | ! read <depth> coordinate |
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| 135 | if (interpol) then !put values in oldmlayer |
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| 136 | call get_var("soildepth",oldmlayer,found) |
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| 137 | if (.not.found) then |
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| 138 | write(*,*)'soil_settings: Problem while reading <soildepth>' |
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| 139 | endif |
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| 140 | else ! put values in mlayer |
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| 141 | call get_var("soildepth",mlayer,found) |
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| 142 | if (.not.found) then |
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| 143 | write(*,*)'soil_settings: Problem while reading <soildepth>' |
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| 144 | endif |
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| 145 | endif !of if (interpol) |
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| 146 | endif !of if (ndims.eq.1) |
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| 147 | |
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| 148 | ! 1.4 Build mlayer(), if necessary |
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| 149 | if (interpol) then |
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| 150 | ! mlayer(k)=lay1*(1+k^(2.9)*(1-exp(-k/20)), PYM grid |
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| 151 | lay1=2.e-4 |
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| 152 | do iloop=0,nsoil-1 |
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| 153 | mlayer(iloop) = lay1*(1+iloop**2.9*(1-exp(-real(iloop)/20.))) |
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| 154 | enddo |
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| 155 | endif |
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| 156 | |
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| 157 | ! 1.5 Build layer(); |
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| 158 | do iloop=1,nsoil-1 |
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| 159 | layer(iloop)=(mlayer(iloop)+mlayer(iloop-1))/2 |
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| 160 | enddo |
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| 161 | layer(nsoil)=2*mlayer(nsoil-1) - mlayer(nsoil-2) |
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| 162 | |
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| 163 | ! 2. Volumetric heat capacity (note: it is declared in comsoil_h) |
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| 164 | ! --------------------------- |
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| 165 | ! "volcapa" is (so far) 0D and written in "controle" table of startfi file |
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| 166 | ! volcapa is read or set when "controle" is read (see tabfi.F) |
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| 167 | ! Just in case, we check here that it is not zero. If it is, we |
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| 168 | ! set it to "default_volcapa" |
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| 169 | |
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| 170 | if (volcapa.le.0.0) then |
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| 171 | write(*,*)'soil_settings: Warning, volcapa = ',volcapa |
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| 172 | write(*,*)' That doesn t seem right' |
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| 173 | write(*,*)' Initializing Volumetric heat capacity to ', |
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| 174 | & default_volcapa |
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| 175 | volcapa=default_volcapa |
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| 176 | endif |
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| 177 | |
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| 178 | ! 3. Thermal inertia for present day climate -inertiedat- & the one given by the pem -ineritesoil-(note: it is declared in comsoil_h) |
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| 179 | ! ------------------ |
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| 180 | ! Knowing the # of dimensions <inertidat> was defined as using, |
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| 181 | ! read/build thermal inertia |
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| 182 | |
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| 183 | ! 3.1 Present day - inertiedat |
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| 184 | |
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| 185 | if (ndims.eq.1) then ! "old 2D-surface" format |
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| 186 | write(*,*)'soil_settings: Thermal inertia is only given as surfac |
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| 187 | &e data!' |
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| 188 | ! Read Surface thermal inertia |
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| 189 | allocate(surfinertia(ngrid)) |
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| 190 | ! ierr=nf90_get_var(nid,nvarid,surfinertia) |
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| 191 | ! if (ierr.NE.nf90_noerr) then |
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| 192 | ! write(*,*)'soil_settings: Problem while reading <inertiedat>' |
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| 193 | ! write(*,*)trim(nf90_strerror(ierr)) |
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| 194 | ! call abort |
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| 195 | ! endif |
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| 196 | call get_field("inertiedat",surfinertia,found) |
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| 197 | if (.not.found) then |
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| 198 | write(*,*) "soil_settings: Failed loading <inertiedat>" |
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| 199 | call abort_physic("soil_settings", |
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| 200 | & "failed loading <inertiedat>",1) |
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| 201 | endif |
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| 202 | |
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| 203 | write(*,*)' => Building soil thermal inertia (using reference sur |
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| 204 | &face thermal inertia)' |
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| 205 | do iloop=1,nsoil |
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| 206 | inertiedat(:,iloop)=surfinertia(:) |
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| 207 | enddo |
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| 208 | deallocate(surfinertia) |
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| 209 | |
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| 210 | else ! "3D surface+depth" format |
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| 211 | if (interpol) then ! put values in oldinertiedat |
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| 212 | if (.not.allocated(oldinertiedat)) then |
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| 213 | allocate(oldinertiedat(ngrid,dimlen),stat=ierr) |
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| 214 | if (ierr.ne.0) then |
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| 215 | write(*,*) 'soil_settings: failed allocation of ', |
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| 216 | & 'oldinertiedat!' |
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| 217 | call abort_physic("soil_settings", |
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| 218 | & "failed allocation of oldinertiedat",1) |
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| 219 | endif |
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| 220 | endif ! of if (.not.allocated(oldinertiedat)) |
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| 221 | |
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| 222 | call get_field("inertiedat",oldinertiedat,found) |
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| 223 | if (.not.found) then |
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| 224 | write(*,*) "soil_settings: Failed loading <inertiedat>" |
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| 225 | call abort_physic("soil_settings", |
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| 226 | & "failed loading <inertiedat>",1) |
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| 227 | endif |
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| 228 | else ! put values in therm_i |
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| 229 | call get_field("inertiedat",inertiedat,found) |
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| 230 | if (.not.found) then |
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| 231 | write(*,*) "soil_settings: Failed loading <inertiedat>" |
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| 232 | call abort_physic("soil_settings", |
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| 233 | & "failed loading <inertiedat>",1) |
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| 234 | endif |
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| 235 | endif ! of if (interpol) |
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| 236 | endif ! of if (ndims.eq.1) |
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| 237 | |
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| 238 | ! 3.2 Inertie from the PEM |
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| 239 | |
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| 240 | ok=inquire_field("inertiesoil") |
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| 241 | |
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| 242 | if (.not.ok) then |
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| 243 | write(*,*)'soil_settings: Field <inertiesoil> not found!' |
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| 244 | write(*,*)' => Building <inertiesoil> from surface values'// |
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| 245 | & ' <inertiedat>' |
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| 246 | ! Case 1: No interpolation needed, we just copy past inertiedat |
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| 247 | if(.not.(interpol)) then |
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| 248 | do islope=1,nslope |
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| 249 | inertiesoil(:,:,islope)=inertiedat(:,:) |
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| 250 | enddo |
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| 251 | else |
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| 252 | ! Case 2: Interpolation needed: we copy past old value from inertiedat |
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| 253 | if (.not.allocated(oldinertiesoil)) then |
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| 254 | allocate(oldinertiesoil(ngrid,dimlen,nslope),stat=ierr) |
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| 255 | endif |
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| 256 | do islope=1,nslope |
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| 257 | oldinertiesoil(:,:,islope)=oldinertiedat(:,:) |
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| 258 | enddo |
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| 259 | endif |
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| 260 | else ! <inertiesoil> found |
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| 261 | if (interpol) then ! put values in oldinertiesoil |
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| 262 | if (.not.allocated(oldinertiesoil)) then |
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| 263 | allocate(oldinertiesoil(ngrid,dimlen,nslope),stat=ierr) |
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| 264 | if (ierr.ne.0) then |
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| 265 | write(*,*) 'soil_settings: failed allocation of ', |
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| 266 | & 'oldinertiesoil!' |
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| 267 | call abort_physic("soil_settings", |
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| 268 | & "failed allocation of oldinertiesoil",1) |
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| 269 | endif |
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| 270 | endif |
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| 271 | |
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| 272 | call get_field("inertiesoil",oldinertiesoil,found) |
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| 273 | if (.not.found) then |
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| 274 | write(*,*) "soil_settings: Failed loading <inertiesoil>" |
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| 275 | call abort_physic("soil_settings", |
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| 276 | & "failed loading <inertiesoil>",1) |
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| 277 | endif |
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| 278 | else ! put values in inertiesoil |
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| 279 | call get_field("inertiesoil",inertiesoil,found, |
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| 280 | & timeindex=indextime) |
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| 281 | if (.not.found) then |
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| 282 | write(*,*) "soil_settings: Failed loading <inertiesoil>" |
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| 283 | call abort_physic("soil_settings", |
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| 284 | & "failed loading <inertiesoil>",1) |
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| 285 | endif |
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| 286 | endif ! of if (interpol) |
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| 287 | endif! of if (.not.ok) |
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| 288 | |
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| 289 | |
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| 290 | |
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| 291 | ! 4. Read soil temperatures |
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| 292 | ! ------------------------- |
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| 293 | |
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| 294 | ok=inquire_field("tsoil") |
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| 295 | |
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| 296 | if (.not.ok) then |
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| 297 | write(*,*)'soil_settings: Field <tsoil> not found!' |
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| 298 | write(*,*)' => Building <tsoil> from surface values <tsurf>' |
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| 299 | ! Case 1: No interpolation needed, we just copy past inertiedat |
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| 300 | if(.not.(interpol)) then |
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| 301 | do iloop=1,nsoil |
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| 302 | do islope=1,nslope |
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| 303 | tsoil(:,iloop,islope)=tsurf(:,islope) |
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| 304 | enddo |
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| 305 | enddo |
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| 306 | else |
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| 307 | ! Case 2: Interpolation needed: we copy past old value from inertiedat |
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| 308 | if (.not.allocated(oldtsoil)) then |
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| 309 | allocate(oldtsoil(ngrid,dimlen,nslope),stat=ierr) |
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| 310 | endif |
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| 311 | do iloop=1,dimlen |
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| 312 | do islope=1,nslope |
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| 313 | oldtsoil(:,iloop,islope)=tsurf(:,islope) |
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| 314 | enddo |
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| 315 | enddo |
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| 316 | endif |
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| 317 | else ! <tsoil> found |
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| 318 | if (interpol) then ! put values in oldtsoil |
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| 319 | if (.not.allocated(oldtsoil)) then |
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| 320 | allocate(oldtsoil(ngrid,dimlen,nslope),stat=ierr) |
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| 321 | if (ierr.ne.0) then |
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| 322 | write(*,*) 'soil_settings: failed allocation of ', |
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| 323 | & 'oldtsoil!' |
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| 324 | call abort_physic("soil_settings", |
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| 325 | & "failed allocation of oldtsoil",1) |
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| 326 | endif |
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| 327 | endif |
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| 328 | call get_field("tsoil",oldtsoil,found) |
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| 329 | if (.not.found) then |
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| 330 | write(*,*) "soil_settings: Failed loading <tsoil>" |
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| 331 | call abort_physic("soil_settings", |
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| 332 | & "failed loading <tsoil>",1) |
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| 333 | endif |
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| 334 | else ! put values in tsoil |
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| 335 | call get_field("tsoil",tsoil,found,timeindex=indextime) |
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| 336 | if (.not.found) then |
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| 337 | write(*,*) "soil_settings: Failed loading <tsoil>" |
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| 338 | call abort_physic("soil_settings", |
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| 339 | & "failed loading <tsoil>",1) |
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| 340 | endif |
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| 341 | endif ! of if (interpol) |
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| 342 | endif! of if (.not.ok) |
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| 343 | |
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| 344 | |
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| 345 | ! 5. If necessary, interpolate soil temperatures and thermal inertias |
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| 346 | ! ------------------------------------------------------------------- |
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| 347 | |
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| 348 | if (olddepthdef) then |
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| 349 | ! tsoil needs to be interpolated, but not therm_i |
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| 350 | allocate(oldgrid(dimlen+1)) |
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| 351 | allocate(oldval(dimlen+1)) |
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| 352 | allocate(newval(nsoil)) |
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| 353 | do ig=1,ngrid |
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| 354 | ! copy values |
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| 355 | do islope=1,nslope |
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| 356 | oldval(1)=tsurf(ig,islope) |
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| 357 | oldval(2:dimlen+1)=oldtsoil(ig,1:dimlen,islope) |
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| 358 | ! build vertical coordinate |
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| 359 | oldgrid(1)=0. ! ground |
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| 360 | oldgrid(2:dimlen+1)=oldmlayer(1:dimlen)* |
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| 361 | & (inertiesoil(ig,1,islope)/volcapa) |
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| 362 | ! interpolate |
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| 363 | call interp_line(oldgrid,oldval,dimlen+1,mlayer,newval,nsoil) |
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| 364 | ! copy result in tsoil |
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| 365 | tsoil(ig,:,islope)=newval(:) |
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| 366 | enddo |
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| 367 | enddo |
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| 368 | ! cleanup |
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| 369 | deallocate(oldgrid) |
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| 370 | deallocate(oldval) |
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| 371 | deallocate(newval) |
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| 372 | interpol=.false. ! no need for interpolation any more |
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| 373 | endif !of if (olddepthdef) |
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| 374 | if (interpol) then |
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| 375 | write(*,*)'soil_settings: Vertical interpolation along new grid' |
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| 376 | ! interpolate soil temperatures and thermal inertias |
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| 377 | if (.not.allocated(oldgrid)) then |
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| 378 | allocate(oldgrid(dimlen+1)) |
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| 379 | allocate(oldval(dimlen+1)) |
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| 380 | allocate(newval(nsoil)) |
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| 381 | endif |
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| 382 | |
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| 383 | ! thermal inertia - present day (inertiedat) |
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| 384 | do ig=1,ngrid |
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| 385 | ! copy data |
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| 386 | oldval(1:dimlen)=oldinertiedat(ig,1:dimlen) |
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| 387 | ! interpolate |
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| 388 | call interp_line(oldmlayer,oldval,dimlen,mlayer,newval,nsoil) |
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| 389 | !copy result in inertiedat |
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| 390 | inertiedat(ig,:)=newval(:) |
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| 391 | ! thermal inertia - general case with PEM (inertie soil) |
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| 392 | do islope=1,nslope |
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| 393 | ! copy data |
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| 394 | oldval(1:dimlen)=oldinertiesoil(ig,1:dimlen,islope) |
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| 395 | ! interpolate |
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| 396 | call interp_line(oldmlayer,oldval,dimlen,mlayer,newval,nsoil) |
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| 397 | !copy result in inertiedat |
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| 398 | inertiesoil(ig,:,islope)=newval(:) |
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| 399 | enddo |
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| 400 | enddo ! ig |
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| 401 | |
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| 402 | ! soil temperature |
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| 403 | ! vertical coordinate |
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| 404 | oldgrid(1)=0.0 |
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| 405 | oldgrid(2:dimlen+1)=oldmlayer(1:dimlen) |
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| 406 | do ig=1,ngrid |
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| 407 | do islope=1,nslope |
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| 408 | ! data |
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| 409 | oldval(1)=tsurf(ig,islope) |
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| 410 | oldval(2:dimlen+1)=oldtsoil(ig,1:dimlen,islope) |
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| 411 | ! interpolate |
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| 412 | call interp_line(oldgrid,oldval,dimlen+1,mlayer,newval,nsoil) |
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| 413 | ! copy result in inertiedat |
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| 414 | tsoil(ig,:,islope)=newval(:) |
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| 415 | enddo |
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| 416 | enddo |
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| 417 | |
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| 418 | !cleanup |
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| 419 | deallocate(oldgrid) |
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| 420 | deallocate(oldval) |
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| 421 | deallocate(newval) |
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| 422 | deallocate(oldinertiedat) |
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| 423 | deallocate(oldinertiesoil) |
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| 424 | deallocate(oldtsoil) |
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| 425 | endif ! of if (interpol) |
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| 426 | |
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| 427 | |
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| 428 | |
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| 429 | ! 6. Load Geothermal Flux |
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| 430 | ! ---------------------------------------------------------------------- |
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| 431 | |
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| 432 | |
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| 433 | call get_field("flux_geo",flux_geo,found,timeindex=indextime) |
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| 434 | if (.not.found) then |
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| 435 | write(*,*) "soil_settings: Failed loading <flux_geo>" |
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| 436 | write(*,*) "soil_settings: Will put <flux_geo> to 0." |
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| 437 | flux_geo(:,:) = 0. |
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| 438 | endif |
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| 439 | |
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| 440 | |
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| 441 | ! 7. Adsorption |
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| 442 | ! ---------------------------------------------------------------------- |
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| 443 | |
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| 444 | |
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| 445 | if (adsorption_soil) then |
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| 446 | ! Subsurface water vapor |
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| 447 | txt="h2o_vap_soil" |
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| 448 | write(*,*) 'phyetat0: loading subsurface tracer', |
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| 449 | & ' h2o_vap_soil' |
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| 450 | call get_field(txt,qsoil(:,:,igcm_h2o_vap_soil,:),found, |
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| 451 | & indextime) |
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| 452 | if (.not.found) then |
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| 453 | write(*,*) "phyetat0: Failed loading <",trim(txt),">" |
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| 454 | write(*,*) " ",trim(txt)," is set to zero" |
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| 455 | qsoil(:,:,igcm_h2o_vap_soil,:)= 0. |
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| 456 | else |
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| 457 | write(*,*) "phyetat0: suburface tracer <",trim(txt), |
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| 458 | & "> range:", minval(qsoil(:,:,igcm_h2o_vap_soil,:)), |
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| 459 | & maxval(qsoil(:,:,igcm_h2o_vap_soil,:)) |
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| 460 | endif |
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| 461 | ! Subsurface ice |
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| 462 | txt="h2o_ice_soil" |
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| 463 | write(*,*) 'phyetat0: loading subsurface tracer', |
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| 464 | & ' h2o_ice_soil' |
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| 465 | call get_field(txt,qsoil(:,:,igcm_h2o_ice_soil,:),found, |
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| 466 | & indextime) |
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| 467 | if (.not.found) then |
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| 468 | write(*,*) "phyetat0: Failed loading <",trim(txt),">" |
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| 469 | write(*,*) " ",trim(txt)," is set to zero" |
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| 470 | qsoil(:,:,igcm_h2o_ice_soil,:)= 0. |
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| 471 | else |
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| 472 | write(*,*) "phyetat0: suburface tracer <",trim(txt), |
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| 473 | & "> range:", |
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| 474 | & minval(qsoil(:,:,igcm_h2o_ice_soil,:)), |
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| 475 | & maxval(qsoil(:,:,igcm_h2o_ice_soil,:)) |
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| 476 | endif |
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| 477 | ! Adsorbed water |
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| 478 | txt="h2o_vap_ads" |
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| 479 | write(*,*) 'phyetat0: loading subsurface tracer', |
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| 480 | & ' h2o_vap_ads' |
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| 481 | call get_field(txt,qsoil(:,:,igcm_h2o_vap_ads,:),found, |
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| 482 | & indextime) |
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| 483 | if (.not.found) then |
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| 484 | write(*,*) "phyetat0: Failed loading <",trim(txt),">" |
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| 485 | write(*,*) " ",trim(txt)," is set to zero" |
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| 486 | qsoil(:,:,igcm_h2o_vap_ads,:)= 0. |
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| 487 | else |
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| 488 | write(*,*) "phyetat0: suburface tracer <",trim(txt),"> |
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| 489 | & range:", |
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| 490 | & minval(qsoil(:,:,igcm_h2o_vap_ads,:)), |
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| 491 | & maxval(qsoil(:,:,igcm_h2o_vap_ads,:)) |
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| 492 | endif |
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| 493 | |
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| 494 | endif ! of adsorption_soil |
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| 495 | |
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| 496 | |
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| 497 | |
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| 498 | ! 8. Report min and max values of soil temperatures and thermal inertias |
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| 499 | ! ---------------------------------------------------------------------- |
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| 500 | |
|---|
| 501 | write(*,*) |
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| 502 | write(*,*)'Soil volumetric heat capacity:',volcapa |
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| 503 | |
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| 504 | xmin = MINVAL(inertiedat) |
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| 505 | xmax = MAXVAL(inertiedat) |
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| 506 | write(*,*)'Soil thermal inertia <inertiedat>:',xmin,xmax |
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| 507 | |
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| 508 | xmin = MINVAL(inertiesoil) |
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| 509 | xmax = MAXVAL(inertiesoil) |
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| 510 | write(*,*)'Soil thermal inertia <inertiesoil>:',xmin,xmax |
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| 511 | |
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| 512 | xmin = 1.0E+20 |
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| 513 | xmax = -1.0E+20 |
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| 514 | xmin = MINVAL(tsoil) |
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| 515 | xmax = MAXVAL(tsoil) |
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| 516 | write(*,*)'Soil temperature <tsoil>:',xmin,xmax |
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| 517 | |
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| 518 | end |
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