1 | SUBROUTINE gastoparticle(pdtphys,zdz,zrho,xlat,pplay,t_seri, |
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2 | . id_prec,id_fine, |
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3 | . tr_seri,his_g2pgas ,his_g2paer ) |
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4 | cnhl . fluxso4chem, flux_sparam_sulf, |
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5 | |
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6 | USE dimphy |
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7 | USE infotrac |
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8 | c USE indice_sol_mod |
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9 | |
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10 | IMPLICIT NONE |
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11 | c |
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12 | #include "dimensions.h" |
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13 | #include "chem.h" |
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14 | #include "chem_spla.h" |
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15 | #include "YOMCST.h" |
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16 | #include "YOECUMF.h" |
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17 | c |
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18 | REAL pdtphys |
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19 | REAL zrho(klon,klev) |
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20 | REAL zdz(klon,klev) |
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21 | REAL tr_seri(klon,klev,nbtr) ! traceurs |
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22 | REAL tend ! tendance par espece |
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23 | REAL xlat(klon) ! latitudes pour chaque point |
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24 | REAL pi |
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25 | c JE: 20140120 |
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26 | REAL his_g2pgas(klon) |
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27 | REAL his_g2paer(klon) |
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28 | REAL tendincm3(klon,klev) |
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29 | REAL tempvar(klon,klev) |
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30 | REAL pplay(klon,klev) |
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31 | REAL t_seri(klon,klev) |
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32 | REAL tend2d(klon,klev) |
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33 | INTEGER id_prec,id_fine |
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34 | c |
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35 | c------------------------- Scaling Parameter -------------------------- |
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36 | c |
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37 | c REAL scale_param_so4(klon) !Scaling parameter for sulfate |
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38 | |
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39 | INTEGER i, k |
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40 | REAL tau_chem !---chemical lifetime in s |
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41 | c |
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42 | c------------------------- Variables to save -------------------------- |
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43 | c |
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44 | cnhl REAL fluxso4chem(klon,klev) |
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45 | cnhl REAL flux_sparam_sulf(klon,klev) |
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46 | |
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47 | c====================================================================== |
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48 | pi=atan(1.)*4. |
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49 | c |
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50 | IF (id_prec>0 .AND. id_fine>0) THEN |
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51 | DO k = 1, klev |
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52 | DO i = 1, klon |
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53 | c |
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54 | c tau_chem=scale_param_so4(i)*86400.*(8.-5.*cos(xlat(i)*pi/180.)) !tchemfctn2 |
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55 | cnhl tau_chem=86400.*(8.-5.*cos(xlat(i)*pi/180.)) !tchemfctn2 |
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56 | tau_chem=86400.*(5.-4.*cos(xlat(i)*pi/180.)) ! |
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57 | tend=tr_seri(i,k,id_prec)*(1.-exp(-pdtphys/tau_chem)) ! Sulfate production |
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58 | cnhl tend=(1.-exp(-pdtphys/tau_chem)) |
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59 | cnhl tend=scale_param_so4(i) !as this it works |
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60 | c |
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61 | tr_seri(i,k,id_prec) =tr_seri(i,k,id_prec) - tend |
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62 | tr_seri(i,k,id_fine) =tr_seri(i,k,id_fine) + |
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63 | . tend/RNAVO*masse_ammsulfate !--gAER/KgAir |
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64 | tend2d(i,k)=tend |
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65 | c |
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66 | cnhl fluxso4chem(i,k) = tend/RNAVO*masse_ammsulfate |
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67 | cnhl flux_sparam_sulf(i,k) = tend/RNAVO*masse_ammsulfate |
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68 | ENDDO |
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69 | ENDDO |
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70 | |
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71 | |
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72 | |
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73 | tempvar=tend2d |
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74 | CALL kg_to_cm3(pplay,t_seri,tempvar) |
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75 | tendincm3=tempvar |
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76 | |
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77 | DO k = 1, klev |
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78 | DO i = 1, klon |
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79 | |
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80 | c his_g2pgas(i) = his_g2pgas(i) + tendincm3(i,k)*1e6*zdz(i,k)/pdtphys |
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81 | his_g2paer(i) = his_g2paer(i) + |
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82 | . tendincm3(i,k)/RNAVO*masse_ammsulfate*1.e3* |
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83 | . 1.e6*zdz(i,k)/pdtphys ! mg/m2/s |
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84 | his_g2pgas(i) = his_g2paer(i)*masse_s/masse_ammsulfate ! mg-S/m2/s |
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85 | |
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86 | ENDDO |
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87 | ENDDO |
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88 | ENDIF |
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89 | |
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90 | c |
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91 | RETURN |
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92 | END |
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