[1310] | 1 | c********************************************************************** |
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| 2 | |
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[2464] | 3 | subroutine hrtherm(ig,euvmod,rm,nespeuv,tx,iz,zenit,jtot) |
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[1310] | 4 | |
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| 5 | |
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| 6 | c feb 2002 fgg first version |
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| 7 | c nov 2002 fgg second version |
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| 8 | |
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| 9 | c********************************************************************** |
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| 10 | use dimphy |
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[2464] | 11 | use param_v4_h, only: ninter,nabs,jfotsout,fluxtop,freccen |
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| 12 | |
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[1310] | 13 | implicit none |
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| 14 | |
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| 15 | c common variables and constants |
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| 16 | |
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| 17 | |
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| 18 | #include "clesphys.h" |
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| 19 | |
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| 20 | |
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| 21 | c local parameters and variables |
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| 22 | |
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| 23 | real xabsi(nabs,klev) !densities (cm^-3) |
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| 24 | real jergs(ninter,nabs,klev) |
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| 25 | |
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| 26 | integer i,j,k,indexint !indexes |
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| 27 | character dn |
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| 28 | |
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| 29 | |
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| 30 | c input and output variables |
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| 31 | |
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| 32 | integer ig ,euvmod |
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| 33 | integer nespeuv |
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| 34 | real rm(klev,nespeuv) !density matrix (cm^-3) |
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| 35 | real jtot(klev) !output: heating rate(erg/s cm3) |
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| 36 | real tx(klev) !temperature |
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| 37 | real zenit |
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| 38 | real iz(klev) |
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| 39 | |
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| 40 | ! tracer indexes for the EUV heating: |
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| 41 | !!! ATTENTION. These values have to be identical to those in euvheat.F90 |
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| 42 | !!! If the values are changed there, the same has to be done here !!! |
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| 43 | |
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[2836] | 44 | ! integer,parameter :: i_co2=1 |
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| 45 | ! integer,parameter :: i_n2=13 |
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| 46 | ! integer,parameter :: i_n=14 |
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| 47 | ! integer,parameter :: i_o=3 |
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| 48 | ! integer,parameter :: i_co=4 |
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[1310] | 49 | |
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[2836] | 50 | integer,parameter :: ix_co2 = 1 |
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| 51 | integer,parameter :: ix_co = 2 |
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| 52 | integer,parameter :: ix_o = 3 |
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| 53 | integer,parameter :: ix_o1d = 4 |
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| 54 | integer,parameter :: ix_o2 = 5 |
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| 55 | integer,parameter :: ix_o3 = 6 |
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| 56 | integer,parameter :: ix_h = 7 |
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| 57 | integer,parameter :: ix_h2 = 8 |
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| 58 | integer,parameter :: ix_oh = 9 |
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| 59 | integer,parameter :: ix_ho2 = 10 |
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| 60 | integer,parameter :: ix_h2o2 = 11 |
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| 61 | integer,parameter :: ix_h2o = 12 |
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| 62 | integer,parameter :: ix_n = 13 |
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| 63 | integer,parameter :: ix_n2d = 14 |
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| 64 | integer,parameter :: ix_no = 15 |
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| 65 | integer,parameter :: ix_no2 = 16 |
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| 66 | integer,parameter :: ix_n2 = 17 |
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[1310] | 67 | |
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| 68 | c*************************PROGRAM STARTS******************************* |
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| 69 | |
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| 70 | !If nighttime, photoabsorption coefficient set to 0 |
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| 71 | if(zenit.gt.90.) then !140 in the martian routine |
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| 72 | dn='n' |
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| 73 | else |
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| 74 | dn='d' |
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| 75 | end if |
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| 76 | if(dn.eq.'n') then |
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| 77 | do i=1,klev |
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| 78 | jtot(i)=0. |
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| 79 | enddo |
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| 80 | return |
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| 81 | endif |
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| 82 | |
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| 83 | !initializations |
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| 84 | jergs(:,:,:)=0. |
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| 85 | xabsi(:,:)=0. |
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| 86 | jtot(:)=0. |
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| 87 | !All number densities to a single array, xabsi(species,layer) |
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| 88 | ! WARNING xabs(nabs,nlev), j=1,nabs --> the values of j should |
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| 89 | ! be the same for xabs than for jfotsout(indexint,j,i) |
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| 90 | ! |
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| 91 | do i=1,klev |
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[2836] | 92 | xabsi(1,i) = rm(i,ix_co2) ! CO2 |
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| 93 | xabsi(2,i) = rm(i,ix_o2) ! O2 |
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| 94 | xabsi(3,i) = rm(i,ix_o) ! O(3P) |
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| 95 | xabsi(4,i) = rm(i,ix_h2o) ! H2O |
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| 96 | xabsi(5,i) = rm(i,ix_h2) ! H2 |
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| 97 | xabsi(6,i) = rm(i,ix_h2o2) ! H2O2 |
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[1310] | 98 | !Only if O3, N or ion chemistry requested |
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[2836] | 99 | if(euvmod.ge.1) then |
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| 100 | xabsi(7,i) = rm(i,ix_o3) ! O3 |
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| 101 | endif |
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| 102 | xabsi(8,i) = rm(i,ix_n2) ! N2 |
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[1310] | 103 | !Only if N or ion chemistry requested |
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[2836] | 104 | if(euvmod.ge.2) then |
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| 105 | xabsi(9,i) = rm(i,ix_n) ! N |
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| 106 | xabsi(10,i) = rm(i,ix_no) ! NO |
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| 107 | xabsi(13,i) = rm(i,ix_no2) ! NO2 |
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| 108 | endif |
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| 109 | xabsi(11,i) = rm(i,ix_co) ! CO |
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| 110 | xabsi(12,i) = rm(i,ix_h) ! H |
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[1310] | 111 | end do |
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| 112 | |
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| 113 | !Calculation of photoabsortion coefficient |
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[2464] | 114 | call jthermcalc_e107(ig,klev,euvmod,rm,nespeuv,tx,iz,zenit) |
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[1310] | 115 | |
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| 116 | !Total photoabsorption coefficient ! erg/(s*cm3) |
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| 117 | do i=1,klev |
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| 118 | jtot(i)=0. |
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| 119 | do j=1,nabs |
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| 120 | do indexint=1,ninter |
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| 121 | jergs(indexint,j,i) = jfotsout(indexint,j,i) |
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| 122 | $ * xabsi (j,i) * fluxtop(indexint) |
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| 123 | $ / (0.5e9 * freccen(indexint)) |
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| 124 | jtot(i)=jtot(i)+jergs(indexint,j,i) |
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| 125 | |
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[1442] | 126 | |
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[1310] | 127 | end do |
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| 128 | end do |
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| 129 | end do |
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| 130 | |
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| 131 | return |
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| 132 | |
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| 133 | end |
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| 134 | |
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