[253] | 1 | subroutine interpolateH2H2(wn,temp,pres,abcoef,firstcall) |
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| 2 | |
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| 3 | !================================================================== |
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| 4 | ! |
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| 5 | ! Purpose |
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| 6 | ! ------- |
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| 7 | ! Calculates the H2-H2 CIA opacity, using a lookup table from |
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| 8 | ! Borysow (2002) |
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| 9 | ! |
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| 10 | ! Authors |
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| 11 | ! ------- |
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| 12 | ! R. Wordsworth (2009) |
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| 13 | ! |
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| 14 | !================================================================== |
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| 15 | |
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[374] | 16 | use datafile_mod, only: datadir |
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| 17 | implicit none |
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[253] | 18 | |
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| 19 | ! input |
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| 20 | double precision wn ! wavenumber (cm^-1) |
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| 21 | double precision temp ! temperature (Kelvin) |
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| 22 | double precision pres ! pressure (Pascals) |
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| 23 | |
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| 24 | ! output |
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| 25 | double precision abcoef ! absorption coefficient (m^-1) |
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| 26 | |
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| 27 | integer nS,nT |
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| 28 | parameter(nS=1649) |
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| 29 | parameter(nT=14) |
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| 30 | |
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| 31 | double precision amagat |
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| 32 | double precision wn_arr(nS) |
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| 33 | double precision temp_arr(nT) |
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| 34 | double precision abs_arr(nS,nT) |
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| 35 | double precision data_tmp(nT/2+1) |
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| 36 | |
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| 37 | integer k |
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| 38 | logical firstcall |
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| 39 | |
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| 40 | save wn_arr, temp_arr, abs_arr |
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| 41 | |
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| 42 | character*100 dt_file |
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| 43 | integer strlen,ios |
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| 44 | |
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| 45 | amagat=(273.15/temp)*(pres/101325.0) |
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| 46 | |
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| 47 | if(firstcall)then |
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| 48 | |
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| 49 | ! 1.1 Open the ASCII files |
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| 50 | |
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| 51 | ! cold |
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[374] | 52 | dt_file=TRIM(datadir)//'/continuum_data/H2H2_CIA_LT.dat' |
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[253] | 53 | open(33,file=dt_file,form='formatted',status='old',iostat=ios) |
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| 54 | if (ios.ne.0) then ! file not found |
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[374] | 55 | write(*,*) 'Error from interpolateH2H2' |
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| 56 | write(*,*) 'Data file ',trim(dt_file),' not found.' |
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| 57 | write(*,*)'Check that your path to datagcm:',trim(datadir) |
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| 58 | write(*,*)' is correct. You can change it in callphys.def with:' |
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| 59 | write(*,*)' datadir = /absolute/path/to/datagcm' |
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| 60 | write(*,*)' Also check that there is a continuum_data/H2H2_CIA_LT.dat there.' |
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| 61 | call abort |
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[253] | 62 | else |
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| 63 | do k=1,nS |
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| 64 | read(33,*) data_tmp |
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| 65 | wn_arr(k)=data_tmp(1) |
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| 66 | abs_arr(k,1:7)=data_tmp(2:8) |
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| 67 | end do |
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| 68 | endif |
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| 69 | close(33) |
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| 70 | |
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| 71 | ! hot |
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[374] | 72 | dt_file=TRIM(datadir)//'/continuum_data/H2H2_CIA_HT.dat' |
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[253] | 73 | open(34,file=dt_file,form='formatted',status='old',iostat=ios) |
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| 74 | if (ios.ne.0) then ! file not found |
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[374] | 75 | write(*,*) 'Error from interpolateH2H2' |
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| 76 | write(*,*) 'Data file ',trim(dt_file),' not found.' |
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| 77 | write(*,*)'Check that your path to datagcm:',trim(datadir) |
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| 78 | write(*,*)' is correct. You can change it in callphys.def with:' |
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| 79 | write(*,*)' datadir = /absolute/path/to/datagcm' |
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| 80 | write(*,*)' Also check that there is a continuum_data/H2H2_CIA_HT.dat there.' |
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| 81 | call abort |
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[253] | 82 | else |
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| 83 | do k=1,nS |
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| 84 | read(34,*) data_tmp |
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| 85 | wn_arr(k)=data_tmp(1) |
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| 86 | ! wn_arr is identical |
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| 87 | abs_arr(k,8:14)=data_tmp(2:8) |
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| 88 | end do |
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| 89 | endif |
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| 90 | close(34) |
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| 91 | |
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| 92 | temp_arr(1) = 60. |
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| 93 | temp_arr(2) = 100. |
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| 94 | temp_arr(3) = 150. |
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| 95 | temp_arr(4) = 200. |
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| 96 | temp_arr(5) = 250. |
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| 97 | temp_arr(6) = 300. |
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| 98 | temp_arr(7) = 350. |
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| 99 | temp_arr(8) = 400. |
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| 100 | temp_arr(9) = 500. |
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| 101 | temp_arr(10) = 600. |
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| 102 | temp_arr(11) = 700. |
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| 103 | temp_arr(12) = 800. |
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| 104 | temp_arr(13) = 900. |
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| 105 | temp_arr(14) = 1000. |
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| 106 | |
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| 107 | |
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[374] | 108 | print*,'interpolateH2H2: At wavenumber ',wn,' cm^-1' |
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[253] | 109 | print*,' temperature ',temp,' K' |
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| 110 | print*,' pressure ',pres,' Pa' |
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| 111 | |
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[305] | 112 | call bilinearH2H2(wn_arr,temp_arr,abs_arr,wn,temp,abcoef) |
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[253] | 113 | |
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| 114 | print*,'the absorption is ',abcoef,' cm^-1 amg^-2' |
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| 115 | |
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| 116 | abcoef=abcoef*100.0*amagat**2 ! convert to m^-1 |
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| 117 | |
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| 118 | print*,'We have ',amagat,' amagats' |
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| 119 | print*,'So the absorption is ',abcoef,' m^-1' |
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| 120 | |
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| 121 | else |
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| 122 | |
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[305] | 123 | call bilinearH2H2(wn_arr,temp_arr,abs_arr,wn,temp,abcoef) |
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[253] | 124 | abcoef=abcoef*100.0*amagat**2 ! convert to m^-1 |
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| 125 | !print*,'The absorption is ',abcoef,' m^-1' |
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| 126 | |
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| 127 | ! unlike for Rayleigh scattering, we do not currently weight by the BB function |
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| 128 | ! however our bands are normally thin, so this is no big deal. |
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| 129 | |
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| 130 | endif |
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| 131 | |
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| 132 | return |
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| 133 | end subroutine interpolateH2H2 |
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| 134 | |
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| 135 | |
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| 136 | !------------------------------------------------------------------------- |
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[305] | 137 | subroutine bilinearH2H2(x_arr,y_arr,f2d_arr,x_in,y_in,f) |
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[253] | 138 | ! Necessary for interpolation of continuum data |
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| 139 | |
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| 140 | implicit none |
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| 141 | |
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| 142 | integer nX,nY,i,j,a,b |
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[305] | 143 | parameter(nX=1649) |
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| 144 | parameter(nY=14) |
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[253] | 145 | |
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| 146 | real*8 x_in,y_in,x,y,x1,x2,y1,y2 |
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| 147 | real*8 f,f11,f12,f21,f22,fA,fB |
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| 148 | real*8 x_arr(nX) |
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| 149 | real*8 y_arr(nY) |
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| 150 | real*8 f2d_arr(nX,nY) |
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| 151 | |
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| 152 | integer strlen |
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| 153 | character*100 label |
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| 154 | label='subroutine bilinear' |
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| 155 | |
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| 156 | x=x_in |
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| 157 | y=y_in |
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| 158 | |
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| 159 | ! 1st check we're within the wavenumber range |
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| 160 | if ((x.lt.x_arr(2)).or.(x.gt.x_arr(nX-2))) then |
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| 161 | f=0.0D+0 |
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| 162 | return |
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| 163 | else |
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| 164 | |
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| 165 | ! in the x (wavenumber) direction 1st |
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| 166 | i=1 |
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| 167 | 10 if (i.lt.(nX+1)) then |
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| 168 | if (x_arr(i).gt.x) then |
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| 169 | x1=x_arr(i-1) |
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| 170 | x2=x_arr(i) |
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| 171 | a=i-1 |
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| 172 | i=9999 |
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| 173 | endif |
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| 174 | i=i+1 |
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| 175 | goto 10 |
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| 176 | endif |
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| 177 | endif |
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| 178 | |
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| 179 | if ((y.lt.y_arr(1)).or.(y.gt.y_arr(nY))) then |
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[374] | 180 | write(*,*) 'Warning from bilinearH2H2:' |
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[305] | 181 | write(*,*) 'Outside continuum temperature range!' |
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[253] | 182 | if(y.lt.y_arr(1))then |
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| 183 | y=y_arr(1)+0.01 |
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| 184 | endif |
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| 185 | if(y.gt.y_arr(nY))then |
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| 186 | y=y_arr(nY)-0.01 |
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| 187 | endif |
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| 188 | else |
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| 189 | |
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| 190 | ! in the y (temperature) direction 2nd |
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| 191 | j=1 |
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| 192 | 20 if (j.lt.(nY+1)) then |
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| 193 | if (y_arr(j).gt.y) then |
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| 194 | y1=y_arr(j-1) |
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| 195 | y2=y_arr(j) |
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| 196 | b=j-1 |
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| 197 | j=9999 |
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| 198 | endif |
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| 199 | j=j+1 |
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| 200 | goto 20 |
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| 201 | endif |
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| 202 | endif |
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| 203 | |
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| 204 | f11=f2d_arr(a,b) |
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| 205 | f21=f2d_arr(a+1,b) |
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| 206 | f12=f2d_arr(a,b+1) |
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| 207 | f22=f2d_arr(a+1,b+1) |
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| 208 | |
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| 209 | ! 1st in x-direction |
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| 210 | fA=f11*(x2-x)/(x2-x1)+f21*(x-x1)/(x2-x1) |
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| 211 | fB=f12*(x2-x)/(x2-x1)+f22*(x-x1)/(x2-x1) |
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| 212 | |
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| 213 | ! then in y-direction |
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| 214 | f=fA*(y2-y)/(y2-y1)+fB*(y-y1)/(y2-y1) |
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| 215 | |
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| 216 | return |
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[305] | 217 | end subroutine bilinearH2H2 |
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