[728] | 1 | !================================================================== |
---|
| 2 | module radii_mod |
---|
| 3 | !================================================================== |
---|
| 4 | ! module to centralize the radii calculations for aerosols |
---|
| 5 | ! OK for water but should be extended to other aerosols (CO2,...) |
---|
| 6 | !================================================================== |
---|
| 7 | |
---|
| 8 | ! water cloud optical properties |
---|
| 9 | |
---|
| 10 | real, save :: rad_h2o |
---|
| 11 | real, save :: rad_h2o_ice |
---|
| 12 | real, save :: Nmix_h2o |
---|
| 13 | real, save :: Nmix_h2o_ice |
---|
| 14 | real, parameter :: coef_chaud=0.13 |
---|
| 15 | real, parameter :: coef_froid=0.09 |
---|
| 16 | |
---|
| 17 | |
---|
| 18 | contains |
---|
| 19 | |
---|
| 20 | |
---|
| 21 | !================================================================== |
---|
[787] | 22 | subroutine su_aer_radii(ngrid,reffrad,nueffrad) |
---|
[728] | 23 | !================================================================== |
---|
| 24 | ! Purpose |
---|
| 25 | ! ------- |
---|
| 26 | ! Compute the effective radii of liquid and icy water particles |
---|
| 27 | ! |
---|
| 28 | ! Authors |
---|
| 29 | ! ------- |
---|
| 30 | ! Jeremy Leconte (2012) |
---|
| 31 | ! |
---|
| 32 | !================================================================== |
---|
| 33 | ! to use 'getin' |
---|
| 34 | use ioipsl_getincom |
---|
| 35 | use radinc_h, only: naerkind |
---|
| 36 | use aerosol_mod |
---|
[858] | 37 | ! USE tracer_h |
---|
[728] | 38 | Implicit none |
---|
| 39 | |
---|
| 40 | #include "callkeys.h" |
---|
| 41 | #include "dimensions.h" |
---|
| 42 | #include "dimphys.h" |
---|
| 43 | |
---|
[858] | 44 | integer,intent(in) :: ngrid |
---|
[728] | 45 | |
---|
[858] | 46 | real, intent(out) :: reffrad(ngrid,nlayermx,naerkind) !aerosols radii (K) |
---|
| 47 | real, intent(out) :: nueffrad(ngrid,nlayermx,naerkind) !variance |
---|
[787] | 48 | |
---|
[728] | 49 | logical, save :: firstcall=.true. |
---|
| 50 | integer :: iaer |
---|
| 51 | |
---|
| 52 | print*,'enter su_aer_radii' |
---|
| 53 | do iaer=1,naerkind |
---|
| 54 | ! these values will change once the microphysics gets to work |
---|
| 55 | ! UNLESS tracer=.false., in which case we should be working with |
---|
| 56 | ! a fixed aerosol layer, and be able to define reffrad in a |
---|
| 57 | ! .def file. To be improved! |
---|
| 58 | |
---|
| 59 | if(iaer.eq.iaero_co2)then ! CO2 ice |
---|
[787] | 60 | reffrad(1:ngrid,1:nlayermx,iaer) = 1.e-4 |
---|
| 61 | nueffrad(1:ngrid,1:nlayermx,iaer) = 0.1 |
---|
[728] | 62 | endif |
---|
| 63 | |
---|
| 64 | if(iaer.eq.iaero_h2o)then ! H2O ice |
---|
[787] | 65 | reffrad(1:ngrid,1:nlayermx,iaer) = 1.e-5 |
---|
| 66 | nueffrad(1:ngrid,1:nlayermx,iaer) = 0.1 |
---|
[728] | 67 | endif |
---|
| 68 | |
---|
| 69 | if(iaer.eq.iaero_dust)then ! dust |
---|
[787] | 70 | reffrad(1:ngrid,1:nlayermx,iaer) = 1.e-5 |
---|
| 71 | nueffrad(1:ngrid,1:nlayermx,iaer) = 0.1 |
---|
[728] | 72 | endif |
---|
| 73 | |
---|
| 74 | if(iaer.eq.iaero_h2so4)then ! H2O ice |
---|
[787] | 75 | reffrad(1:ngrid,1:nlayermx,iaer) = 1.e-6 |
---|
| 76 | nueffrad(1:ngrid,1:nlayermx,iaer) = 0.1 |
---|
[728] | 77 | endif |
---|
| 78 | |
---|
| 79 | if(iaer.gt.4)then |
---|
| 80 | print*,'Error in callcorrk, naerkind is too high (>4).' |
---|
| 81 | print*,'The code still needs generalisation to arbitrary' |
---|
| 82 | print*,'aerosol kinds and number.' |
---|
| 83 | call abort |
---|
| 84 | endif |
---|
| 85 | |
---|
| 86 | enddo |
---|
| 87 | |
---|
| 88 | |
---|
| 89 | if (radfixed) then |
---|
| 90 | |
---|
| 91 | write(*,*)"radius of H2O water particles:" |
---|
| 92 | rad_h2o=13. ! default value |
---|
| 93 | call getin("rad_h2o",rad_h2o) |
---|
| 94 | write(*,*)" rad_h2o = ",rad_h2o |
---|
| 95 | |
---|
| 96 | write(*,*)"radius of H2O ice particles:" |
---|
| 97 | rad_h2o_ice=35. ! default value |
---|
| 98 | call getin("rad_h2o_ice",rad_h2o_ice) |
---|
| 99 | write(*,*)" rad_h2o_ice = ",rad_h2o_ice |
---|
| 100 | |
---|
| 101 | else |
---|
| 102 | |
---|
| 103 | write(*,*)"Number mixing ratio of H2O water particles:" |
---|
| 104 | Nmix_h2o=1.e6 ! default value |
---|
| 105 | call getin("Nmix_h2o",Nmix_h2o) |
---|
| 106 | write(*,*)" Nmix_h2o = ",Nmix_h2o |
---|
| 107 | |
---|
| 108 | write(*,*)"Number mixing ratio of H2O ice particles:" |
---|
| 109 | Nmix_h2o_ice=Nmix_h2o ! default value |
---|
| 110 | call getin("Nmix_h2o_ice",Nmix_h2o_ice) |
---|
| 111 | write(*,*)" Nmix_h2o_ice = ",Nmix_h2o_ice |
---|
| 112 | endif |
---|
| 113 | |
---|
| 114 | print*,'exit su_aer_radii' |
---|
| 115 | |
---|
| 116 | end subroutine su_aer_radii |
---|
| 117 | !================================================================== |
---|
| 118 | |
---|
| 119 | |
---|
| 120 | !================================================================== |
---|
[858] | 121 | subroutine h2o_reffrad(ngrid,pq,pt,reffrad,nueffrad) |
---|
[728] | 122 | !================================================================== |
---|
| 123 | ! Purpose |
---|
| 124 | ! ------- |
---|
| 125 | ! Compute the effective radii of liquid and icy water particles |
---|
| 126 | ! |
---|
| 127 | ! Authors |
---|
| 128 | ! ------- |
---|
| 129 | ! Jeremy Leconte (2012) |
---|
| 130 | ! |
---|
| 131 | !================================================================== |
---|
| 132 | use watercommon_h, Only: T_h2O_ice_liq,T_h2O_ice_clouds,rhowater,rhowaterice |
---|
| 133 | Implicit none |
---|
| 134 | |
---|
| 135 | #include "callkeys.h" |
---|
| 136 | #include "dimensions.h" |
---|
| 137 | #include "dimphys.h" |
---|
| 138 | #include "comcstfi.h" |
---|
| 139 | |
---|
[858] | 140 | integer,intent(in) :: ngrid |
---|
[728] | 141 | |
---|
[858] | 142 | real, intent(in) :: pq(ngrid,nlayermx) !water ice mixing ratios (kg/kg) |
---|
| 143 | real, intent(in) :: pt(ngrid,nlayermx) !temperature (K) |
---|
| 144 | real, intent(out) :: reffrad(ngrid,nlayermx) !aerosol radii |
---|
| 145 | real, intent(out) :: nueffrad(ngrid,nlayermx) ! dispersion |
---|
[787] | 146 | |
---|
[728] | 147 | integer :: ig,l |
---|
| 148 | real zfice ,zrad,zrad_liq,zrad_ice |
---|
| 149 | real,external :: CBRT |
---|
| 150 | |
---|
| 151 | |
---|
| 152 | if (radfixed) then |
---|
| 153 | do l=1,nlayermx |
---|
[787] | 154 | do ig=1,ngrid |
---|
[728] | 155 | zfice = 1.0 - (pt(ig,l)-T_h2O_ice_clouds) / (T_h2O_ice_liq-T_h2O_ice_clouds) |
---|
| 156 | zfice = MIN(MAX(zfice,0.0),1.0) |
---|
[858] | 157 | reffrad(ig,l)= rad_h2o * (1.-zfice) + rad_h2o_ice * zfice |
---|
| 158 | nueffrad(ig,l) = coef_chaud * (1.-zfice) + coef_froid * zfice |
---|
[728] | 159 | enddo |
---|
| 160 | enddo |
---|
| 161 | else |
---|
| 162 | do l=1,nlayermx |
---|
[787] | 163 | do ig=1,ngrid |
---|
[728] | 164 | zfice = 1.0 - (pt(ig,l)-T_h2O_ice_clouds) / (T_h2O_ice_liq-T_h2O_ice_clouds) |
---|
| 165 | zfice = MIN(MAX(zfice,0.0),1.0) |
---|
[858] | 166 | zrad_liq = CBRT( 3*pq(ig,l)/(4*Nmix_h2o*pi*rhowater) ) |
---|
| 167 | zrad_ice = CBRT( 3*pq(ig,l)/(4*Nmix_h2o_ice*pi*rhowaterice) ) |
---|
| 168 | nueffrad(ig,l) = coef_chaud * (1.-zfice) + coef_froid * zfice |
---|
[728] | 169 | zrad = zrad_liq * (1.-zfice) + zrad_ice * zfice |
---|
[863] | 170 | |
---|
| 171 | reffrad(ig,l) = min(max(zrad,1.e-6),1000.e-6) |
---|
[728] | 172 | enddo |
---|
| 173 | enddo |
---|
| 174 | end if |
---|
| 175 | |
---|
| 176 | end subroutine h2o_reffrad |
---|
| 177 | !================================================================== |
---|
| 178 | |
---|
| 179 | |
---|
| 180 | !================================================================== |
---|
[787] | 181 | subroutine h2o_cloudrad(ngrid,pql,reffliq,reffice) |
---|
[728] | 182 | !================================================================== |
---|
| 183 | ! Purpose |
---|
| 184 | ! ------- |
---|
| 185 | ! Compute the effective radii of liquid and icy water particles |
---|
| 186 | ! |
---|
| 187 | ! Authors |
---|
| 188 | ! ------- |
---|
| 189 | ! Jeremy Leconte (2012) |
---|
| 190 | ! |
---|
| 191 | !================================================================== |
---|
| 192 | use watercommon_h, Only: rhowater,rhowaterice |
---|
| 193 | Implicit none |
---|
| 194 | |
---|
| 195 | #include "callkeys.h" |
---|
| 196 | #include "dimensions.h" |
---|
| 197 | #include "dimphys.h" |
---|
| 198 | #include "comcstfi.h" |
---|
| 199 | |
---|
[858] | 200 | integer,intent(in) :: ngrid |
---|
[728] | 201 | |
---|
[787] | 202 | real, intent(in) :: pql(ngrid,nlayermx) !condensed water mixing ratios (kg/kg) |
---|
| 203 | real, intent(out) :: reffliq(ngrid,nlayermx),reffice(ngrid,nlayermx) !liquid and ice water particle radii (K) |
---|
| 204 | |
---|
[728] | 205 | real,external :: CBRT |
---|
| 206 | |
---|
| 207 | |
---|
| 208 | if (radfixed) then |
---|
[787] | 209 | reffliq(1:ngrid,1:nlayermx)= rad_h2o |
---|
| 210 | reffice(1:ngrid,1:nlayermx)= rad_h2o_ice |
---|
[728] | 211 | else |
---|
[787] | 212 | reffliq(1:ngrid,1:nlayermx) = CBRT( 3*pql(1:ngrid,1:nlayermx)/(4*Nmix_h2o*pi*rhowater) ) |
---|
[863] | 213 | reffliq(1:ngrid,1:nlayermx) = min(max(reffliq(1:ngrid,1:nlayermx),1.e-6),1000.e-6) |
---|
[787] | 214 | reffice(1:ngrid,1:nlayermx) = CBRT( 3*pql(1:ngrid,1:nlayermx)/(4*Nmix_h2o_ice*pi*rhowaterice) ) |
---|
[863] | 215 | reffice(1:ngrid,1:nlayermx) = min(max(reffice(1:ngrid,1:nlayermx),1.e-6),1000.e-6) |
---|
[728] | 216 | end if |
---|
| 217 | |
---|
| 218 | end subroutine h2o_cloudrad |
---|
| 219 | !================================================================== |
---|
| 220 | |
---|
| 221 | |
---|
| 222 | |
---|
| 223 | !================================================================== |
---|
[787] | 224 | subroutine co2_reffrad(ngrid,nq,pq,reffrad) |
---|
[728] | 225 | !================================================================== |
---|
| 226 | ! Purpose |
---|
| 227 | ! ------- |
---|
| 228 | ! Compute the effective radii of co2 ice particles |
---|
| 229 | ! |
---|
| 230 | ! Authors |
---|
| 231 | ! ------- |
---|
| 232 | ! Jeremy Leconte (2012) |
---|
| 233 | ! |
---|
| 234 | !================================================================== |
---|
[858] | 235 | USE tracer_h, only:igcm_co2_ice,rho_co2 |
---|
[728] | 236 | Implicit none |
---|
| 237 | |
---|
| 238 | #include "callkeys.h" |
---|
| 239 | #include "dimensions.h" |
---|
| 240 | #include "dimphys.h" |
---|
| 241 | #include "comcstfi.h" |
---|
| 242 | |
---|
[858] | 243 | integer,intent(in) :: ngrid,nq |
---|
[728] | 244 | |
---|
[787] | 245 | real, intent(in) :: pq(ngrid,nlayermx,nq) !tracer mixing ratios (kg/kg) |
---|
[863] | 246 | real, intent(out) :: reffrad(ngrid,nlayermx) !co2 ice particles radii (K) |
---|
[787] | 247 | |
---|
[728] | 248 | integer :: ig,l |
---|
| 249 | real :: zrad |
---|
| 250 | real,external :: CBRT |
---|
| 251 | |
---|
| 252 | |
---|
| 253 | |
---|
| 254 | if (radfixed) then |
---|
[858] | 255 | reffrad(1:ngrid,1:nlayermx) = 5.e-5 ! CO2 ice |
---|
[728] | 256 | else |
---|
| 257 | do l=1,nlayermx |
---|
[787] | 258 | do ig=1,ngrid |
---|
[728] | 259 | zrad = CBRT( 3*pq(ig,l,igcm_co2_ice)/(4*Nmix_co2*pi*rho_co2) ) |
---|
[858] | 260 | reffrad(ig,l) = min(max(zrad,1.e-6),100.e-6) |
---|
[728] | 261 | enddo |
---|
| 262 | enddo |
---|
| 263 | end if |
---|
| 264 | |
---|
| 265 | end subroutine co2_reffrad |
---|
| 266 | !================================================================== |
---|
| 267 | |
---|
| 268 | |
---|
| 269 | |
---|
| 270 | !================================================================== |
---|
[787] | 271 | subroutine dust_reffrad(ngrid,reffrad) |
---|
[728] | 272 | !================================================================== |
---|
| 273 | ! Purpose |
---|
| 274 | ! ------- |
---|
| 275 | ! Compute the effective radii of dust particles |
---|
| 276 | ! |
---|
| 277 | ! Authors |
---|
| 278 | ! ------- |
---|
| 279 | ! Jeremy Leconte (2012) |
---|
| 280 | ! |
---|
| 281 | !================================================================== |
---|
| 282 | Implicit none |
---|
| 283 | |
---|
| 284 | #include "callkeys.h" |
---|
| 285 | #include "dimensions.h" |
---|
| 286 | #include "dimphys.h" |
---|
| 287 | |
---|
[858] | 288 | integer,intent(in) :: ngrid |
---|
[787] | 289 | |
---|
[863] | 290 | real, intent(out) :: reffrad(ngrid,nlayermx) !dust particles radii (K) |
---|
[728] | 291 | |
---|
[858] | 292 | reffrad(1:ngrid,1:nlayermx) = 2.e-6 ! dust |
---|
[728] | 293 | |
---|
| 294 | end subroutine dust_reffrad |
---|
| 295 | !================================================================== |
---|
| 296 | |
---|
| 297 | |
---|
| 298 | !================================================================== |
---|
[787] | 299 | subroutine h2so4_reffrad(ngrid,reffrad) |
---|
[728] | 300 | !================================================================== |
---|
| 301 | ! Purpose |
---|
| 302 | ! ------- |
---|
| 303 | ! Compute the effective radii of h2so4 particles |
---|
| 304 | ! |
---|
| 305 | ! Authors |
---|
| 306 | ! ------- |
---|
| 307 | ! Jeremy Leconte (2012) |
---|
| 308 | ! |
---|
| 309 | !================================================================== |
---|
| 310 | Implicit none |
---|
| 311 | |
---|
| 312 | #include "callkeys.h" |
---|
| 313 | #include "dimensions.h" |
---|
| 314 | #include "dimphys.h" |
---|
| 315 | |
---|
[858] | 316 | integer,intent(in) :: ngrid |
---|
[787] | 317 | |
---|
[863] | 318 | real, intent(out) :: reffrad(ngrid,nlayermx) !h2so4 particle radii (K) |
---|
[728] | 319 | |
---|
[858] | 320 | reffrad(1:ngrid,1:nlayermx) = 1.e-6 ! h2so4 |
---|
[728] | 321 | |
---|
| 322 | end subroutine h2so4_reffrad |
---|
| 323 | !================================================================== |
---|
| 324 | |
---|
| 325 | |
---|
| 326 | |
---|
| 327 | end module radii_mod |
---|
| 328 | !================================================================== |
---|