[38] | 1 | subroutine calchim(ptimestep,pplay,pplev,pt,pdt,dist_sol,mu0, |
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| 2 | $ zzlay,zday,pq,pdq,rice, |
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| 3 | & dqchim,dqschim,dqcloud,dqscloud) |
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| 4 | c |
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| 5 | implicit none |
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| 6 | c |
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| 7 | c======================================================================= |
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| 8 | c |
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| 9 | c subject: |
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| 10 | c -------- |
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| 11 | c |
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| 12 | c Prepare the call for the photochemical module, and send back the |
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| 13 | c tendencies from photochemistry in the chemical species mass mixing ratios |
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| 14 | c |
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| 15 | c Author: Sebastien Lebonnois (08/11/2002) |
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| 16 | c ------- |
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| 17 | c update 12/06/2003 for water ice clouds and compatibility with dust |
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| 18 | c update 07/2003 for coupling with thermosphere (Monica Angelats-i-Coll) |
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| 19 | c update 03/05/2005 cosmetic changes (Franck Lefevre) |
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| 20 | c update sept. 2008 identify tracers by their names (Ehouarn Millour) |
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| 21 | c |
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| 22 | c Arguments: |
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| 23 | c ---------- |
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| 24 | c |
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| 25 | c Input: |
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| 26 | c |
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| 27 | c ptimestep timestep (s) |
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| 28 | c pplay(ngridmx,nlayermx) Pressure at the middle of the layers (Pa) |
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| 29 | c pplev(ngridmx,nlayermx+1) Intermediate pressure levels (Pa) |
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| 30 | c pt(ngridmx,nlayermx) Temperature (K) |
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| 31 | c pdt(ngridmx,nlayermx) Temperature tendency (K) |
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| 32 | c dist_sol distance of the sun (AU) |
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| 33 | c mu0(ngridmx) cos of solar zenith angle (=1 when sun at zenith) |
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| 34 | c pq(ngridmx,nlayermx,nqmx) Advected fields, ie chemical species here |
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| 35 | c pdq(ngridmx,nlayermx,nqmx) Previous tendencies on pq |
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| 36 | c rice(ngridmx,nlayermx) Estimated ice crystal radius (m) |
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| 37 | c |
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| 38 | c Output: |
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| 39 | c |
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| 40 | c dqchim(ngridmx,nlayermx,nqmx) ! tendencies on pq due to chemistry |
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| 41 | c dqschim(ngridmx,nqmx) ! tendencies on qsurf |
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| 42 | c |
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| 43 | c======================================================================= |
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| 44 | |
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| 45 | c Declarations : |
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| 46 | c -------------- |
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| 47 | |
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| 48 | #include "dimensions.h" |
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| 49 | #include "dimphys.h" |
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| 50 | #include "chimiedata.h" |
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| 51 | #include "tracer.h" |
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| 52 | #include "comcstfi.h" |
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| 53 | #include "callkeys.h" |
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| 54 | #include "conc.h" |
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| 55 | |
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| 56 | c Arguments : |
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| 57 | c ----------- |
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| 58 | |
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| 59 | c inputs: |
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| 60 | c ------- |
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| 61 | |
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| 62 | real ptimestep |
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| 63 | real pplay(ngridmx,nlayermx) ! pressure at the middle of the layers |
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| 64 | real zzlay(ngridmx,nlayermx) ! pressure at the middle of the layers |
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| 65 | real pplev(ngridmx,nlayermx+1) ! intermediate pressure levels |
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| 66 | real pt(ngridmx,nlayermx) ! temperature |
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| 67 | real pdt(ngridmx,nlayermx) ! temperature tendency |
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| 68 | real dist_sol ! distance of the sun (AU) |
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| 69 | real mu0(ngridmx) ! cos of solar zenith angle (=1 when sun at zenith) |
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| 70 | real pq(ngridmx,nlayermx,nqmx) ! tracers mass mixing ratio |
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| 71 | real pdq(ngridmx,nlayermx,nqmx) ! previous tendencies |
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| 72 | real zday ! date (time since Ls=0, in martian days) |
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| 73 | real rice(ngridmx,nlayermx) ! Estimated ice crystal radius (m) |
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| 74 | |
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| 75 | c outputs: |
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| 76 | c -------- |
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| 77 | |
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| 78 | real dqchim(ngridmx,nlayermx,nqmx) ! tendencies on pq due to chemistry |
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| 79 | real dqschim(ngridmx,nqmx) ! tendencies on qsurf |
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| 80 | real dqcloud(ngridmx,nlayermx,nqmx)! tendencies on pq due to condensation |
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| 81 | real dqscloud(ngridmx,nqmx) ! tendencies on qsurf |
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| 82 | |
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| 83 | c Local variables : |
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| 84 | c ----------------- |
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| 85 | |
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| 86 | character*20 str20 |
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| 87 | integer ig,l,i,iq |
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| 88 | integer foundswitch, lswitch |
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| 89 | real zq(ngridmx,nlayermx,nqmx) ! pq+pdq*ptimestep before chemistry |
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| 90 | ! new mole fraction after |
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| 91 | real colden(ngridmx,nqmx) ! Column densities (cm-2) |
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| 92 | real zt(ngridmx,nlayermx) ! temperature |
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| 93 | c |
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| 94 | c for each column of atmosphere: |
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| 95 | c |
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| 96 | real zpress(nlayermx) ! Pressure (mbar) |
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| 97 | real zdens(nlayermx) ! Density (cm-3) |
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| 98 | real ztemp(nlayermx) ! Temperature (K) |
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| 99 | real zlocal(nlayermx) ! Altitude (km) |
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| 100 | real zycol(nlayermx,nqmx) ! Composition (mole fractions) |
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| 101 | real szacol ! Solar zenith angle |
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| 102 | real jo3(nlayermx) ! Photodissociation rate O3->O1D (s-1) |
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| 103 | c |
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| 104 | c for output: |
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| 105 | c |
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| 106 | real zdens3d(ngridmx,nlayermx) ! Density (cm-3) |
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| 107 | real jo3_3d(ngridmx,nlayermx) ! Photodissociation rate O3->O1D (s-1) |
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| 108 | real surfice(ngridmx,nlayermx) ! Surface of ice particules (um2/cm3) |
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| 109 | |
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| 110 | logical output ! to issue calls to writediagfi and stats |
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| 111 | parameter (output=.true.) ! see at end of routine |
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| 112 | |
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| 113 | logical,save :: firstcall=.true. |
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| 114 | integer,save :: nbq ! number of tracers used in the chemistry |
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| 115 | integer,save :: niq(nqmx) ! array storing the indexes of the tracers |
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| 116 | |
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| 117 | ! index of tracers: |
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| 118 | integer,save :: i_co2=0 |
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| 119 | integer,save :: i_co=0 |
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| 120 | integer,save :: i_o=0 |
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| 121 | integer,save :: i_o1d=0 |
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| 122 | integer,save :: i_o2=0 |
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| 123 | integer,save :: i_o3=0 |
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| 124 | integer,save :: i_h=0 |
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| 125 | integer,save :: i_h2=0 |
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| 126 | integer,save :: i_oh=0 |
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| 127 | integer,save :: i_ho2=0 |
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| 128 | integer,save :: i_h2o2=0 |
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| 129 | integer,save :: i_n2=0 |
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| 130 | integer,save :: i_ar=0 |
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| 131 | integer,save :: i_ice=0 ! water ice |
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| 132 | integer,save :: i_h2o=0 ! water vapour |
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| 133 | |
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| 134 | c |
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| 135 | c scheme A: 1 ; scheme B: 2 |
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| 136 | c |
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| 137 | integer,parameter :: scheme=2 |
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| 138 | c |
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| 139 | c======================================================================= |
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| 140 | c initialization of the chemistry (first call only) |
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| 141 | c======================================================================= |
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| 142 | c |
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| 143 | if (firstcall) then |
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| 144 | c |
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| 145 | if (photochem) then |
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| 146 | print*,'calchim: INIT CHEMISTRY' |
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| 147 | if (scheme .eq. 1) then |
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| 148 | print*,'calchim: Scheme A : A METTRE A JOUR !!' |
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| 149 | stop |
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| 150 | c call init_chimie_A |
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| 151 | else |
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| 152 | print*,'calchim: Scheme B' |
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| 153 | call init_chimie_B |
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| 154 | end if |
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| 155 | end if |
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| 156 | |
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| 157 | ! find index of chemical tracers to use |
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| 158 | nbq=0 ! to count number of tracers |
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| 159 | i_co2=igcm_co2 |
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| 160 | if (i_co2.eq.0) then |
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| 161 | write(*,*) "calchim: Error; no CO2 tracer !!!" |
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| 162 | stop |
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| 163 | else |
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| 164 | nbq=nbq+1 |
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| 165 | niq(nbq)=i_co2 |
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| 166 | endif |
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| 167 | i_co=igcm_co |
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| 168 | if (i_co.eq.0) then |
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| 169 | write(*,*) "calchim: Error; no CO tracer !!!" |
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| 170 | stop |
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| 171 | else |
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| 172 | nbq=nbq+1 |
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| 173 | niq(nbq)=i_co |
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| 174 | endif |
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| 175 | i_o=igcm_o |
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| 176 | if (i_o.eq.0) then |
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| 177 | write(*,*) "calchim: Error; no O tracer !!!" |
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| 178 | stop |
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| 179 | else |
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| 180 | nbq=nbq+1 |
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| 181 | niq(nbq)=i_o |
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| 182 | endif |
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| 183 | i_o1d=igcm_o1d |
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| 184 | if (i_o1d.eq.0) then |
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| 185 | write(*,*) "calchim: Error; no O1D tracer !!!" |
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| 186 | stop |
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| 187 | else |
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| 188 | nbq=nbq+1 |
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| 189 | niq(nbq)=i_o1d |
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| 190 | endif |
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| 191 | i_o2=igcm_o2 |
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| 192 | if (i_o2.eq.0) then |
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| 193 | write(*,*) "calchim: Error; no O2 tracer !!!" |
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| 194 | stop |
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| 195 | else |
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| 196 | nbq=nbq+1 |
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| 197 | niq(nbq)=i_o2 |
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| 198 | endif |
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| 199 | i_o3=igcm_o3 |
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| 200 | if (i_o3.eq.0) then |
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| 201 | write(*,*) "calchim: Error; no O3 tracer !!!" |
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| 202 | stop |
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| 203 | else |
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| 204 | nbq=nbq+1 |
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| 205 | niq(nbq)=i_o3 |
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| 206 | endif |
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| 207 | i_h=igcm_h |
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| 208 | if (i_h.eq.0) then |
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| 209 | write(*,*) "calchim: Error; no H tracer !!!" |
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| 210 | stop |
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| 211 | else |
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| 212 | nbq=nbq+1 |
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| 213 | niq(nbq)=i_h |
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| 214 | endif |
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| 215 | i_h2=igcm_h2 |
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| 216 | if (i_h2.eq.0) then |
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| 217 | write(*,*) "calchim: Error; no H2 tracer !!!" |
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| 218 | stop |
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| 219 | else |
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| 220 | nbq=nbq+1 |
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| 221 | niq(nbq)=i_h2 |
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| 222 | endif |
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| 223 | i_oh=igcm_oh |
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| 224 | if (i_oh.eq.0) then |
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| 225 | write(*,*) "calchim: Error; no OH tracer !!!" |
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| 226 | stop |
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| 227 | else |
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| 228 | nbq=nbq+1 |
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| 229 | niq(nbq)=i_oh |
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| 230 | endif |
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| 231 | i_ho2=igcm_ho2 |
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| 232 | if (i_ho2.eq.0) then |
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| 233 | write(*,*) "calchim: Error; no HO2 tracer !!!" |
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| 234 | stop |
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| 235 | else |
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| 236 | nbq=nbq+1 |
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| 237 | niq(nbq)=i_ho2 |
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| 238 | endif |
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| 239 | i_h2o2=igcm_h2o2 |
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| 240 | if (i_h2o2.eq.0) then |
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| 241 | write(*,*) "calchim: Error; no H2O2 tracer !!!" |
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| 242 | stop |
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| 243 | else |
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| 244 | nbq=nbq+1 |
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| 245 | niq(nbq)=i_h2o2 |
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| 246 | endif |
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| 247 | i_n2=igcm_n2 |
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| 248 | if (i_n2.eq.0) then |
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| 249 | write(*,*) "calchim: Error; no N2 tracer !!!" |
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| 250 | stop |
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| 251 | else |
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| 252 | nbq=nbq+1 |
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| 253 | niq(nbq)=i_n2 |
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| 254 | endif |
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| 255 | i_ar=igcm_ar |
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| 256 | if (i_ar.eq.0) then |
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| 257 | write(*,*) "calchim: Error; no AR tracer !!!" |
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| 258 | stop |
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| 259 | else |
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| 260 | nbq=nbq+1 |
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| 261 | niq(nbq)=i_ar |
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| 262 | endif |
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| 263 | i_ice=igcm_h2o_ice |
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| 264 | if (i_ice.eq.0) then |
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| 265 | write(*,*) "calchim: Error; no water ice tracer !!!" |
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| 266 | stop |
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| 267 | else |
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| 268 | nbq=nbq+1 |
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| 269 | niq(nbq)=i_ice |
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| 270 | endif |
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| 271 | i_h2o=igcm_h2o_vap |
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| 272 | if (i_h2o.eq.0) then |
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| 273 | write(*,*) "calchim: Error; no water vapor tracer !!!" |
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| 274 | stop |
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| 275 | else |
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| 276 | nbq=nbq+1 |
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| 277 | niq(nbq)=i_h2o |
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| 278 | endif |
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| 279 | |
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| 280 | write(*,*) 'calchim: found nbq=',nbq,' tracers' |
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| 281 | write(*,*) ' i_co2=',i_co2 |
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| 282 | write(*,*) ' i_co=',i_co |
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| 283 | write(*,*) ' i_o=',i_o |
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| 284 | write(*,*) ' i_o1d=',i_o1d |
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| 285 | write(*,*) ' i_o2=',i_o2 |
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| 286 | write(*,*) ' i_o3=',i_o3 |
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| 287 | write(*,*) ' i_h=',i_h |
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| 288 | write(*,*) ' i_h2=',i_h2 |
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| 289 | write(*,*) ' i_oh=',i_oh |
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| 290 | write(*,*) ' i_ho2=',i_ho2 |
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| 291 | write(*,*) ' i_h2o2=',i_h2o2 |
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| 292 | write(*,*) ' i_n2=',i_n2 |
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| 293 | write(*,*) ' i_ar=',i_ar |
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| 294 | write(*,*) ' i_ice=',i_ice |
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| 295 | write(*,*) ' i_h2o=',i_h2o |
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| 296 | ! write(*,*) ' niq(:)=',niq |
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| 297 | ! write(*,*) ' nqchem_min,nqmx=',nqchem_min,nqmx |
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| 298 | |
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| 299 | firstcall = .false. |
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| 300 | end if ! if (firstcall) |
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| 301 | |
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| 302 | ! Initialize output tendencies to zero (to handle case of tracers which |
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| 303 | ! are not used in the chemistry (e.g. dust)) |
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| 304 | dqchim(:,:,:)=0 |
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| 305 | dqschim(:,:)=0 |
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| 306 | |
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| 307 | |
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| 308 | c |
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| 309 | c======================================================================= |
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| 310 | c loop over grid |
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| 311 | c======================================================================= |
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| 312 | c |
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| 313 | do ig = 1,ngridmx |
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| 314 | c |
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| 315 | c local updates |
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| 316 | c |
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| 317 | foundswitch = 0 |
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| 318 | do l = 1,nlayermx |
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| 319 | zt(ig,l)=pt(ig,l)+pdt(ig,l)*ptimestep |
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| 320 | do i=1,nbq |
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| 321 | iq=niq(i) ! get tracer index |
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| 322 | zq(ig,l,iq) = pq(ig,l,iq) + pdq(ig,l,iq)*ptimestep |
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| 323 | zycol(l,iq) = zq(ig,l,iq) * mmean(ig,l)/mmol(iq) |
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| 324 | enddo |
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| 325 | zpress(l) = pplay(ig,l)/100. |
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| 326 | ztemp(l) = zt(ig,l) |
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| 327 | zdens(l) = zpress(l)/(kb*1.e4*ztemp(l)) |
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| 328 | zlocal(l) = zzlay(ig,l)/1000. |
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| 329 | c |
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| 330 | c search for switch index between regions |
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| 331 | c |
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| 332 | if (photochem .and. thermochem) then |
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| 333 | if (foundswitch .eq. 0 .and. pplay(ig,l).lt.1.e-3) then |
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| 334 | lswitch = l |
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| 335 | foundswitch=1 |
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| 336 | end if |
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| 337 | end if |
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| 338 | if ( .not. photochem) then |
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| 339 | lswitch = 22 |
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| 340 | end if |
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| 341 | if (.not. thermochem) then |
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| 342 | lswitch = min(33,nlayermx+1) |
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| 343 | end if |
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| 344 | c |
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| 345 | c ice surface area in microns^2/cm^3 |
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| 346 | c |
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| 347 | c = 4 pi r^2 * [ zq * mugaz/NA / (rhoice*4/3 pi r^3) ] *zdens |
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| 348 | c = 3/r * [ zq * mugaz/NA / rhoice ] *zdens |
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| 349 | c with r in microns, rhoice = 0.92e-12 g microns^-3 and zdens in cm^-3 |
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| 350 | c |
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| 351 | if (water) then |
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| 352 | zycol(l,i_ice) = (3.e-6/rice(ig,l))*zq(ig,l,i_ice) |
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| 353 | $ *(mugaz/6.022e23)*zdens(l)/0.92e-12 |
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| 354 | c write(*,*) "rice=",rice(ig,l)," m / zdens=",zdens(l), |
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| 355 | c $ " cm-3 / icesurf=",zycol(l,nqmx-1)," microns^2/cm^3" |
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| 356 | surfice(ig,l) = zycol(l,i_ice) |
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| 357 | end if |
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| 358 | c |
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| 359 | end do ! of do l=1,nlayermx |
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| 360 | c |
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| 361 | szacol = acos(mu0(ig))*180./pi |
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| 362 | c |
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| 363 | c======================================================================= |
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| 364 | c call chemical subroutine |
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| 365 | c======================================================================= |
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| 366 | c |
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| 367 | if (photochem) then |
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| 368 | if (scheme .eq. 1) then |
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| 369 | print*,'Scheme A : A METTRE A JOUR !!' |
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| 370 | c call photochemist_A(zycol,szacol,ptimestep, |
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| 371 | c $ zpress,ztemp,zdens,dist_sol) |
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| 372 | else |
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| 373 | call photochemist_B(lswitch,zycol,szacol,ptimestep, |
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| 374 | $ zpress,ztemp,zdens,dist_sol,jo3) |
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| 375 | end if |
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| 376 | end if |
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| 377 | |
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| 378 | if (thermochem) then |
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| 379 | call chemthermos(ig,lswitch,zycol,ztemp,zdens,zpress, |
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| 380 | $ zlocal,szacol,ptimestep,zday) |
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| 381 | end if |
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| 382 | c |
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| 383 | c======================================================================= |
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| 384 | c tendencies |
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| 385 | c======================================================================= |
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| 386 | c |
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| 387 | c must be 0. for water ice: |
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| 388 | c |
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| 389 | if (water) then |
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| 390 | do l = 1,nlayermx |
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| 391 | ! dqchim(ig,l,nqmx-1) = 0. |
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| 392 | dqchim(ig,l,i_ice) = 0. |
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| 393 | end do |
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| 394 | end if |
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| 395 | c |
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| 396 | c tendency for CO2 = - sum of others for lower atmosphere |
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| 397 | c tendency for O = - sum of others for upper atmosphere |
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| 398 | c |
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| 399 | do l = 1,nlayermx |
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| 400 | if (l .lt. lswitch) then |
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| 401 | do i=1,nbq |
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| 402 | iq=niq(i) ! get tracer index |
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| 403 | if ((iq.ne.i_co2).and.(iq.ne.i_ice)) then |
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| 404 | dqchim(ig,l,iq) = (zycol(l,iq)*mmol(iq)/mmean(ig,l) |
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| 405 | $ - zq(ig,l,iq))/ptimestep |
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| 406 | else if (iq.eq.i_co2) then |
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| 407 | dqchim(ig,l,iq) = 0. |
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| 408 | end if |
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| 409 | dqschim(ig,iq) = 0. |
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| 410 | end do ! of do i=1,nbq |
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| 411 | |
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| 412 | do i=1,nbq |
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| 413 | iq=niq(i) ! get tracer index |
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| 414 | if (iq.ne.i_co2) then |
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| 415 | dqchim(ig,l,i_co2) = dqchim(ig,l,i_co2) |
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| 416 | $ - dqchim(ig,l,iq) |
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| 417 | end if |
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| 418 | end do |
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| 419 | else if (l .ge. lswitch) then |
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| 420 | do i=1,nbq |
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| 421 | iq=niq(i) ! get tracer index |
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| 422 | if ((iq.ne.i_o).and.(iq.ne.i_ice)) then |
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| 423 | dqchim(ig,l,iq) = (zycol(l,iq)*mmol(iq) |
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| 424 | $ /mmean(ig,l) |
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| 425 | $ - zq(ig,l,iq))/ptimestep |
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| 426 | else if (iq.eq.i_o) then |
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| 427 | ! i_o = iq |
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| 428 | dqchim(ig,l,iq) = 0. |
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| 429 | end if |
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| 430 | enddo |
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| 431 | |
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| 432 | do i=1,nbq |
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| 433 | iq=niq(i) ! get tracer index |
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| 434 | if (iq.ne.i_o) then |
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| 435 | dqchim(ig,l,i_o) = dqchim(ig,l,i_o) |
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| 436 | $ - dqchim(ig,l,iq) |
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| 437 | end if |
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| 438 | end do |
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| 439 | end if ! of if (l.lt.lswitch) else if (l.ge.lswitch) |
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| 440 | end do ! of do l = 1,nlayermx |
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| 441 | c |
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| 442 | c dust: This is now taken care of as a first step at beginning of routine |
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| 443 | c |
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| 444 | ! if (nqchem_min .gt. 1) then |
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| 445 | ! do iq = 1,nqchem_min-1 |
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| 446 | ! do l = 1,nlayermx |
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| 447 | ! dqchim(ig,l,iq) = 0. |
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| 448 | ! end do |
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| 449 | ! dqschim(ig,iq) = 0. |
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| 450 | ! end do |
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| 451 | ! end if |
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| 452 | c |
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| 453 | c condensation of h2o2 |
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| 454 | c |
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| 455 | call perosat(ig,ptimestep,pplev,pplay, |
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| 456 | $ ztemp,zycol,dqcloud,dqscloud) |
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| 457 | c |
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| 458 | c for outputs |
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| 459 | c |
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| 460 | do i=1,nbq |
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| 461 | iq=niq(i) ! get tracer index |
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| 462 | colden(ig,iq) = 0. |
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| 463 | do l = 1,nlayermx |
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| 464 | c |
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| 465 | c column density converted in cm-2 |
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| 466 | c pplev en pa, mugaz en g.mol-1 et g en m.s-2 |
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| 467 | c not for ice |
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| 468 | c |
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| 469 | if (iq.ne.i_h2o2) then |
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| 470 | colden(ig,iq) = colden(ig,iq) + zycol(l,iq) |
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| 471 | $ *6.022e22*(pplev(ig,l)-pplev(ig,l+1)) |
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| 472 | $ /(mmean(ig,l)*g) |
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| 473 | else ! for H2O2, remove condensation from zycol |
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| 474 | colden(ig,iq) = colden(ig,iq) + (zycol(l,iq) + |
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| 475 | $ dqcloud(ig,l,iq)*ptimestep*mmean(ig,l)/mmol(iq)) |
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| 476 | $ *6.022e22*(pplev(ig,l)-pplev(ig,l+1)) |
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| 477 | $ /(mmean(ig,l)*g) |
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| 478 | end if |
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| 479 | c |
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| 480 | c local densities, for outputs (put in zq) |
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| 481 | c not for ice |
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| 482 | c |
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| 483 | zq(ig,l,iq) = zycol(l,iq)*zdens(l) |
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| 484 | c for H2O2, remove condensation from zycol |
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| 485 | if (iq.eq.i_h2o2) then |
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| 486 | zq(ig,l,iq) = zdens(l)*(zycol(l,iq) + |
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| 487 | $ dqcloud(ig,l,iq)*ptimestep*mmean(ig,l)/mmol(iq)) |
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| 488 | end if |
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| 489 | end do |
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| 490 | end do |
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| 491 | c |
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| 492 | c density and j(o3->o1d), for outputs |
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| 493 | c |
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| 494 | zdens3d(ig,1) = zdens(1) |
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| 495 | jo3_3d(ig,1) = jo3(1) |
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| 496 | do l = 2,nlayermx |
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| 497 | zdens3d(ig,l) = zdens(l) |
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| 498 | jo3_3d(ig,l) = jo3(l) |
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| 499 | end do |
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| 500 | c |
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| 501 | c======================================================================= |
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| 502 | c end of loop over grid |
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| 503 | c======================================================================= |
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| 504 | c |
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| 505 | end do ! of do ig=1,ngridmx |
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| 506 | c |
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| 507 | c======================================================================= |
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| 508 | c write outputs |
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| 509 | c======================================================================= |
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| 510 | c |
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| 511 | ! value of parameter 'output' to trigger writting of outputs |
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| 512 | ! is set above at the declaration of the variable. |
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| 513 | |
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| 514 | if (output) then |
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| 515 | |
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| 516 | if (ngridmx .gt. 1) then |
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| 517 | c call writediagfi(ngridmx,'dens','atm dens.','cm-3',3,zdens3d(1,1)) |
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| 518 | c call writediagfi(ngridmx,'jo3','j o3->o1d','s-1',3,jo3_3d(1,1)) |
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| 519 | c call writediagfi(ngridmx,'sice','ice surf.','um2/cm3',3,surfice(1,1)) |
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| 520 | do i=1,nbq |
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| 521 | iq=niq(i) ! get tracer index |
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| 522 | if (iq.ne.i_ice) then |
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| 523 | write(str20(1:20),'(a20)') noms(iq) |
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| 524 | call writediagfi(ngridmx,'n_'//trim(str20),'density', |
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| 525 | $ 'cm-3',3,zq(1,1,iq)) |
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| 526 | c call writediagfi(ngridmx,'dqch_'//str5,'density','cm-3',3,dqchim(1,1,iq)) |
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| 527 | c if (noms(iq) .eq. "h2o2" .or. noms(iq) .eq. "h2o") then |
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| 528 | c call writediagfi(ngridmx,'cl_'//str5,'density','cm-3',3,dqcloud(1,1,iq)) |
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| 529 | c end if |
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| 530 | call writediagfi(ngridmx,'c_'//trim(str20), |
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| 531 | $ 'col. dens.','cm-2',2,colden(1,iq)) |
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| 532 | end if |
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| 533 | end do |
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| 534 | c |
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| 535 | if (callstats) then |
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| 536 | c |
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| 537 | c convert to mole.cm-2 for the column densities |
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| 538 | c |
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| 539 | do i=1,nbq |
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| 540 | iq=niq(i) ! get tracer index |
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| 541 | do ig = 1,ngridmx |
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| 542 | colden(ig,iq) = colden(ig,iq)/6.022e23 |
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| 543 | end do |
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| 544 | end do |
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| 545 | c |
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| 546 | c call wstats(ngridmx,"jo3","jo3->o1d","s-1",3,jo3_3d) |
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| 547 | c |
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| 548 | do i=1,nbq |
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| 549 | iq=niq(i) ! get tracer index |
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| 550 | if (iq.ne.i_ice) then |
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| 551 | write(str20(1:20),'(a20)') noms(iq) |
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| 552 | call wstats(ngridmx,"n_"//trim(str20),"density", |
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| 553 | & "cm-3",3,zq(1,1,iq)) |
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| 554 | call wstats(ngridmx,"c_"//trim(str20),"col. dens.", |
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| 555 | & "mol cm-2",2,colden(1,iq)) |
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| 556 | end if |
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| 557 | end do ! of i=1,nbq |
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| 558 | end if ! of if (callstats) |
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| 559 | end if ! of if (ngridmx.gt.1) |
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| 560 | c |
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| 561 | endif ! of if (output) |
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| 562 | c |
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| 563 | end |
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