source: flexpart.git/src/com_mod.f90 @ 78e62dc

10.4.1_peseiGFS_025bugfixes+enhancementsdevrelease-10release-10.4.1scaling-bugunivie
Last change on this file since 78e62dc was 78e62dc, checked in by flexpart <>, 9 years ago

New OH parameter in SPECIES files (now 3 instead of 2). New path to OH binariy files.

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File size: 33.0 KB
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1!*******************************************************************************
2!        Include file for particle diffusion model FLEXPART                    *
3!        This file contains a global common block used by FLEXPART             *
4!                                                                              *
5!        Author: A. Stohl                                                      *
6!                                                                              *
7!        June 1996                                                             *
8!                                                                              *
9!        Last update:15 August 2013 IP                                         *
10!                                                                              *
11!*******************************************************************************
12
13module com_mod
14
15  use par_mod, only: dp, numpath, maxnests, maxageclass, maxspec, ni, &
16       numclass, nymax, nxmax, maxcolumn, maxwf, nzmax, nxmaxn, nymaxn, &
17       maxreceptor, maxpart, maxrand, nwzmax, nuvzmax, numwfmem
18
19  implicit none
20
21  !****************************************************************
22  ! Variables defining where FLEXPART input/output files are stored
23  !****************************************************************
24
25  character :: path(numpath+2*maxnests)*120
26  integer :: length(numpath+2*maxnests)
27  character(len=256) :: pathfile, flexversion, arg1, arg2
28  character(len=256) :: ohfields_path
29 
30  ! path                    path names needed for trajectory model
31  ! length                  length of path names needed for trajectory model
32  ! pathfile                file where pathnames are stored
33  ! flexversion             version of flexpart
34  ! arg                     input arguments from launch at command line
35  ! ohfields_path           path to binary files for OH fields
36
37  !********************************************************
38  ! Variables defining the general model run specifications
39  !********************************************************
40
41  integer :: ibdate,ibtime,iedate,ietime
42  real(kind=dp) :: bdate,edate
43
44
45  ! ibdate                  beginning date (YYYYMMDD)
46  ! ibtime                  beginning time (HHMISS)
47  ! iedate                  ending date (YYYYMMDD)
48  ! ietime                  ending time (HHMISS)
49  ! bdate                   beginning date of simulation (julian date)
50  ! edate                   ending date of simulation (julian date)
51
52
53  integer :: ldirect,ideltas
54
55  ! ldirect                 1 for forward, -1 for backward simulation
56  ! ideltas                 length of trajectory loop from beginning to
57  !                    ending date (s)
58
59  integer :: loutstep,loutaver,loutsample,method,lsynctime
60  real :: outstep
61
62  ! loutstep [s]            gridded concentration output every loutstep seconds
63  ! loutaver [s]            concentration output is an average over [s] seconds
64  ! loutsample [s]          sampling interval of gridded concentration output
65  ! lsynctime [s]           synchronisation time of all particles
66  ! method                  indicator which dispersion method is to be used
67  ! outstep = real(abs(loutstep))
68
69  real :: ctl,fine
70  integer :: ifine,iout,ipout,ipin,iflux,mdomainfill
71  integer :: mquasilag,nested_output,ind_source,ind_receptor
72  integer :: ind_rel,ind_samp,ioutputforeachrelease,linit_cond,surf_only
73  logical :: turbswitch
74  integer :: cblflag  !added by mc for cbl
75
76  ! ctl      factor, by which time step must be smaller than Lagrangian time scale
77  ! ifine    reduction factor for time step used for vertical wind
78  !     Langevin equation for the vertical wind component
79  ! ioutputforeachrelease Should each release be a seperate output field?
80  ! iflux    flux calculation options: 1 calculation of fluxes, 2 no fluxes
81  ! iout     output options: 1 conc. output (ng/m3), 2 mixing ratio (pptv), 3 both
82  ! ipout    particle dump options: 0 no, 1 every output interval, 2 only at end
83  ! ipin     read in particle positions from dumped file from a previous run
84  ! fine     real(ifine)
85  ! mdomainfill 0: normal run
86  !        1: particles are initialized according to atmospheric mass distribution
87  ! ind_source switches between different units for concentrations at the source
88  !  NOTE that in backward simulations the release of computational particles
89  !  takes place at the "receptor" and the sampling of particles at the "source".
90  !     1= mass units
91  !     2= mass mixing ratio units
92  ! ind_receptor switches between different units for FLEXPART concentration at the receptor
93  !     1= mass units
94  !     2= mass mixing ratio units
95  ! linit_cond  switch on the output of sensitivity to initial conditions for backward runs
96  !     0=no, 1=mass unit, 2=mass mixing ratio unit
97  ! mquasilag 0: normal run
98  !      1: Particle position output is produced in a condensed format and particles are numbered
99  ! surf_only   switch output in grid_time files for surface only or full vertical resolution
100  !      0=no (full vertical resolution), 1=yes (surface only)
101  ! nested_output: 0 no, 1 yes
102  ! turbswitch              determines how the Markov chain is formulated
103
104  ! ind_rel and ind_samp  are used within the code to change between mass and mass-mix (see readcommand.f)
105  ! cblflag !: 1 activate cbl skewed pdf routines with bi-gaussina pdf whan OL<0 added by mc
106
107
108  integer :: mintime,itsplit
109
110  ! mintime                 minimum time step to be used by FLEXPART
111  ! itsplit                 time constant for splitting particles
112
113  integer :: lsubgrid,lconvection,lagespectra
114
115  ! lsubgrid     1 if subgrid topography parameterization switched on, 2 if not
116  ! lconvection  1 if convection parameterization switched on, 0 if not
117  ! lagespectra  1 if age spectra calculation switched on, 2 if not
118
119  integer :: lnetcdfout
120  ! lnetcdfout   1 for netcdf grid output, 0 if not. Set in COMMAND (namelist input)
121
122  integer :: nageclass,lage(maxageclass)
123
124  ! nageclass               number of ageclasses for the age spectra calculation
125  ! lage [s]                ageclasses for the age spectra calculation
126
127
128  logical :: gdomainfill
129
130  ! gdomainfill             .T., if domain-filling is global, .F. if not
131
132!hg
133  logical :: readclouds
134
135!NIK 16.02.2015
136  integer :: tot_blc_count, tot_inc_count
137
138
139
140  !*********************************************************************
141  ! Variables defining the release locations, released species and their
142  ! properties, etc.
143  !*********************************************************************
144
145  !change Sabine Eckhardt, only save the first 1000 identifier for releasepoints
146  character :: compoint(1001)*45
147  integer :: numpoint
148  !sec, now dynamically allocated:
149  ! ireleasestart(maxpoint),ireleaseend(maxpoint)
150  !      real xpoint1(maxpoint),ypoint1(maxpoint)
151  !real xpoint2(maxpoint),ypoint2(maxpoint)
152  !real zpoint1(maxpoint),zpoint2(maxpoint)
153  !integer*2 kindz(maxpoint)
154  integer :: specnum(maxspec)
155  !real xmass(maxpoint,maxspec)
156  real :: decay(maxspec)
157  real :: weta(maxspec),wetb(maxspec)
158! NIK: 31.01.2013- parameters for in-cloud scavening
159  real :: weta_in(maxspec), wetb_in(maxspec)
160  real :: reldiff(maxspec),henry(maxspec),f0(maxspec)
161  real :: density(maxspec),dquer(maxspec),dsigma(maxspec)
162  real :: vsetaver(maxspec),cunningham(maxspec),weightmolar(maxspec)
163  real :: vset(maxspec,ni),schmi(maxspec,ni),fract(maxspec,ni)
164  real :: ri(5,numclass),rac(5,numclass),rcl(maxspec,5,numclass)
165  real :: rgs(maxspec,5,numclass),rlu(maxspec,5,numclass)
166  real :: rm(maxspec),dryvel(maxspec),kao(maxspec)
167  real :: ohcconst(maxspec),ohdconst(maxspec),ohnconst(maxspec)
168  ! se  it is possible to associate a species with a second one to make transfer from gas to aerosol
169  integer :: spec_ass(maxspec)
170
171  real :: area_hour(maxspec,24),point_hour(maxspec,24)
172  real :: area_dow(maxspec,7),point_dow(maxspec,7)
173
174  !integer npart(maxpoint)
175  integer :: nspec,maxpointspec_act
176  character(len=10) :: species(maxspec)
177
178
179  ! compoint                comment, also "name" of each starting point
180  ! numpoint                actual number of trajectory starting/ending points
181  ! ireleasestart,ireleaseend [s] starting and ending time of each release
182  ! xmass                   total mass emitted
183  ! xpoint1,ypoint1         lower left coordinates of release area
184  ! xpoint2,ypoint2         upper right coordinates of release area
185  ! zpoint1,zpoint2         min./max. z-coordinates of release points
186  ! kindz                   1: zpoint is in m agl, 2: zpoint is in m asl
187  ! npart                   number of particles per release point
188  ! nspec                   number of different species allowed for one release
189  ! maxpointspec_act        number of releaspoints for which a different output shall be created
190  ! species                 name of species
191  ! decay                   decay constant of radionuclide
192
193  ! WET DEPOSITION
194  ! weta, wetb              parameters for determining below-cloud wet scavenging coefficients
195  ! weta_in, wetb_in       parameters for determining in-cloud wet scavenging coefficients
196  ! wetc_in, wetd_in       parameters for determining in-cloud wet scavenging coefficients
197
198  ! GAS DEPOSITION
199  ! reldiff                 diffusivitiy of species relative to diff. of H2O
200  ! henry [M/atm]           Henry constant
201  ! f0                      reactivity relative to that of O3
202  ! ri [s/m]                stomatal resistance
203  ! rcl [s/m]               lower canopy resistance
204  ! rgs [s/m]               ground resistance
205  ! rlu [s/m]               leaf cuticular resistance
206  ! rm [s/m]                mesophyll resistance
207  ! dryvel [m/s]            constant dry deposition velocity
208
209  ! PARTICLE DEPOSITION
210  ! density [kg/m3]         density of particles
211  ! dquer [m]               mean diameter of particles
212  ! dsigma                  dsigma=10 or dsigma=0.1 means that 68% of the
213  !                    mass are between 0.1*dquer and 10*dquer
214
215  ! fract                   mass fraction of each diameter interval
216  ! vset [m/s]              gravitational settling velocity in ni intervals
217  ! cunningham              Cunningham slip correction (strictly valid only near surface)
218  ! vsetaver [m/s]          average gravitational settling velocity
219  ! schmi                   Schmidt number**2/3 of each diameter interval
220  ! weightmolar [g/mol]     molecular weight
221
222  ! TIME VARIATION OF EMISSION
223  ! area_hour, point_hour   daily variation of emission strengths for area and point sources
224  ! area_dow, point_dow     day-of-week variation of emission strengths for area and point sources
225
226
227
228  !**********************************************************
229  ! Variables used for domain-filling trajectory calculations
230  !**********************************************************
231
232  integer :: nx_we(2),ny_sn(2)
233  integer :: numcolumn
234  integer :: numcolumn_we(2,0:nymax-1),numcolumn_sn(2,0:nxmax-1)
235  real :: zcolumn_we(2,0:nymax-1,maxcolumn)
236  real :: zcolumn_sn(2,0:nxmax-1,maxcolumn)
237  real :: xmassperparticle
238  real :: acc_mass_we(2,0:nymax-1,maxcolumn)
239  real :: acc_mass_sn(2,0:nxmax-1,maxcolumn)
240
241  ! nx_we(2)                x indices of western and eastern boundary of domain-filling
242  ! ny_sn(2)                y indices of southern and northern boundary of domain-filling
243  ! numcolumn_we            number of particles to be released within one column
244  !                    at the western and eastern boundary surfaces
245  ! numcolumn_sn            same as numcolumn_we, but for southern and northern domain boundary
246  ! numcolumn               maximum number of particles to be released within a single
247  !                    column
248  ! zcolumn_we              altitudes where particles are to be released
249  !                    at the western and eastern boundary surfaces
250  ! zcolumn_sn              same as zcolumn_we, but for southern and northern domain boundary
251  ! xmassperparticle        air mass per particle in the domain-filling traj. option
252  ! acc_mass_we             mass that has accumulated at the western and eastern boundary;
253  !                    if it exceeds xmassperparticle, a particle is released and
254  !                    acc_mass_we is reduced accordingly
255  ! acc_mass_sn             same as acc_mass_we, but for southern and northern domain boundary
256
257
258
259  !******************************************************************************
260  ! Variables associated with the ECMWF meteorological input data ("wind fields")
261  !******************************************************************************
262
263  integer :: numbwf,wftime(maxwf),lwindinterv
264  character(len=255) :: wfname(maxwf),wfspec(maxwf)
265
266  ! lwindinterv [s]         Interval between wind fields currently in memory
267  ! numbwf                  actual number of wind fields
268  ! wftime(maxwf) [s]       times relative to beginning time of wind fields
269  ! wfname(maxwf)           file names of wind fields
270  ! wfspec(maxwf)           specifications of wind field file, e.g. if on hard
271  !                         disc or on tape
272
273  integer :: memtime(numwfmem),memind(3) ! eso: or memind(numwfmem)
274
275  ! memtime [s]             validation times of wind fields in memory
276  ! memind                  pointer to wind field, in order to avoid shuffling
277  !                         of wind fields
278
279
280
281  !****************************************************************************
282  ! Variables defining actual size and geographical location of the wind fields
283  !****************************************************************************
284
285  integer :: nx,ny,nxmin1,nymin1,nxfield,nuvz,nwz,nz,nmixz,nlev_ec
286  real :: dx,dy,xlon0,ylat0,dxconst,dyconst,height(nzmax)
287
288  ! nx,ny,nz                actual dimensions of wind fields in x,y and z
289  !                    direction, respectively
290  ! nxmin1,nymin1           nx-1, ny-1, respectively
291  ! nuvz,nwz                vertical dimension of original ECMWF data
292  ! nxfield                 same as nx for limited area fields,
293  !                    but for global fields nx=nxfield+1
294  ! nmixz                   number of levels up to maximum PBL height (3500 m)
295
296  ! nuvz is used for u,v components
297  ! nwz is used for w components (staggered grid)
298  ! nz is used for the levels in transformed coordinates (terrain-following Cartesian
299  ! coordinates)
300
301  ! nlev_ec  number of levels ECMWF model
302  ! dx                      grid distance in x direction
303  ! dy                      grid distance in y direction
304  ! dxconst,dyconst         auxiliary variables for utransform,vtransform
305  ! height                  heights of all levels
306  ! xlon0                   geographical longitude and
307  ! ylat0                   geographical latitude of lower left grid point
308
309
310
311  !*************************************************
312  ! Variables used for vertical model discretization
313  !*************************************************
314
315  real :: akm(nwzmax),bkm(nwzmax)
316  real :: akz(nuvzmax),bkz(nuvzmax)
317  real :: aknew(nzmax),bknew(nzmax)
318
319  ! akm,bkm: coeffizients which regulate vertical discretization of ecmwf model
320  !     (at the border of model layers)
321  ! akz,bkz: model discretization coeffizients at the centre of the layers
322  ! aknew,bknew model discretization coeffizients at the interpolated levels
323
324
325
326  ! Fixed fields, unchangeable with time
327  !*************************************
328
329  real :: oro(0:nxmax-1,0:nymax-1)
330  real :: excessoro(0:nxmax-1,0:nymax-1)
331  real :: lsm(0:nxmax-1,0:nymax-1)
332  real :: xlanduse(0:nxmax-1,0:nymax-1,numclass)
333
334  ! oro [m]              orography of the ECMWF model
335  ! excessoro            excess orography mother domain
336  ! lsm                  land sea mask of the ECMWF model
337  ! xlanduse [0-1]       area fractions in percent
338
339  ! 3d fields
340  !**********
341
342  real :: uu(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
343  real :: vv(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
344  real :: uupol(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
345  real :: vvpol(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
346  real :: ww(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
347  real :: tt(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
348  real :: qv(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
349!hg adding cloud water
350  real :: clwc(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
351  real :: ciwc(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
352  real :: pv(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
353  real :: rho(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
354  real :: drhodz(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
355  real :: tth(0:nxmax-1,0:nymax-1,nuvzmax,numwfmem)
356  real :: qvh(0:nxmax-1,0:nymax-1,nuvzmax,numwfmem)
357  real :: clwch(0:nxmax-1,0:nymax-1,nuvzmax,numwfmem)
358  real :: ciwch(0:nxmax-1,0:nymax-1,nuvzmax,numwfmem)
359
360  real :: pplev(0:nxmax-1,0:nymax-1,nuvzmax,numwfmem)
361  !scavenging NIK, PS
362  integer(kind=1) :: clouds(0:nxmax-1,0:nymax-1,nzmax,numwfmem)
363  integer :: cloudsh(0:nxmax-1,0:nymax-1,numwfmem)
364  ! integer :: icloudbot(0:nxmax-1,0:nymax-1,numwfmem)
365  ! integer :: icloudthck(0:nxmax-1,0:nymax-1,numwfmem)
366
367
368  ! uu,vv,ww [m/2]       wind components in x,y and z direction
369  ! uupol,vvpol [m/s]    wind components in polar stereographic projection
370  ! tt [K]               temperature data
371  ! qv                   specific humidity data
372  ! pv (pvu)             potential vorticity
373  ! rho [kg/m3]          air density
374  ! drhodz [kg/m2]       vertical air density gradient
375  ! tth,qvh              tth,qvh on original eta levels
376  ! clouds:   no cloud, no precipitation   0
377  !      cloud, no precipitation      1
378  !      rainout  conv/lsp dominated  2/3
379  !      washout  conv/lsp dominated  4/5
380  ! PS 2013
381  !c icloudbot (m)        cloud bottom height
382  !c icloudthck (m)       cloud thickness     
383
384  ! pplev for the GFS version
385
386  ! 2d fields
387  !**********
388
389  real :: ps(0:nxmax-1,0:nymax-1,1,numwfmem)
390  real :: sd(0:nxmax-1,0:nymax-1,1,numwfmem)
391  real :: msl(0:nxmax-1,0:nymax-1,1,numwfmem)
392  real :: tcc(0:nxmax-1,0:nymax-1,1,numwfmem)
393  real :: u10(0:nxmax-1,0:nymax-1,1,numwfmem)
394  real :: v10(0:nxmax-1,0:nymax-1,1,numwfmem)
395  real :: tt2(0:nxmax-1,0:nymax-1,1,numwfmem)
396  real :: td2(0:nxmax-1,0:nymax-1,1,numwfmem)
397  real :: lsprec(0:nxmax-1,0:nymax-1,1,numwfmem)
398  real :: convprec(0:nxmax-1,0:nymax-1,1,numwfmem)
399  real :: sshf(0:nxmax-1,0:nymax-1,1,numwfmem)
400  real :: ssr(0:nxmax-1,0:nymax-1,1,numwfmem)
401  real :: surfstr(0:nxmax-1,0:nymax-1,1,numwfmem)
402  real :: ustar(0:nxmax-1,0:nymax-1,1,numwfmem)
403  real :: wstar(0:nxmax-1,0:nymax-1,1,numwfmem)
404  real :: hmix(0:nxmax-1,0:nymax-1,1,numwfmem)
405  real :: tropopause(0:nxmax-1,0:nymax-1,1,numwfmem)
406  real :: oli(0:nxmax-1,0:nymax-1,1,numwfmem)
407! real :: diffk(0:nxmax-1,0:nymax-1,1,numwfmem) this is not in use?
408
409  ! ps                   surface pressure
410  ! sd                   snow depth
411  ! msl                  mean sea level pressure
412  ! tcc                  total cloud cover
413  ! u10                  10 meter u
414  ! v10                  10 meter v
415  ! tt2                  2 meter temperature
416  ! td2                  2 meter dew point
417  ! lsprec [mm/h]        large scale total precipitation
418  ! convprec [mm/h]      convective precipitation
419  ! sshf                 surface sensible heat flux
420  ! ssr                  surface solar radiation
421  ! surfstr              surface stress
422  ! ustar [m/s]          friction velocity
423  ! wstar [m/s]          convective velocity scale
424  ! hmix  [m]            mixing height
425  ! tropopause [m]       altitude of thermal tropopause
426  ! oli [m]              inverse Obukhov length (1/L)
427  ! diffk [m2/s]         diffusion coefficient at reference height
428
429
430  real :: vdep(0:nxmax-1,0:nymax-1,maxspec,numwfmem)
431
432  ! vdep [m/s]           deposition velocities
433
434
435  !********************************************************************
436  ! Variables associated with the ECMWF input data (nested wind fields)
437  !********************************************************************
438
439  ! NOTE: all nested variables have the same name as the variables used
440  ! for the mother domain, except with a 'n' appended at the end
441  !********************************************************************
442
443  integer :: numbnests
444
445  ! numbnests    number of nested grids
446
447  character(len=255) :: wfnamen(maxnests,maxwf)
448  character(len=18) :: wfspecn(maxnests,maxwf)
449
450  ! wfnamen      nested wind field names
451  ! wfspecn      specifications of wind field file, e.g. if on hard
452  !         disc or on tape
453
454
455  !*********************************************************************
456  ! Variables characterizing size and location of the nested wind fields
457  !*********************************************************************
458
459  integer :: nxn(maxnests),nyn(maxnests)
460  real :: dxn(maxnests),dyn(maxnests),xlon0n(maxnests),ylat0n(maxnests)
461
462  ! nxn,nyn      actual dimensions of nested wind fields in x and y direction
463  ! dxn,dyn      grid distances in x,y direction for the nested grids
464  ! xlon0n       geographical longitude of lower left grid point of nested wind fields
465  ! ylat0n       geographical latitude of lower left grid point of nested wind fields
466
467
468  ! Nested fields, unchangeable with time
469  !**************************************
470
471  real :: oron(0:nxmaxn-1,0:nymaxn-1,maxnests)
472  real :: excessoron(0:nxmaxn-1,0:nymaxn-1,maxnests)
473  real :: lsmn(0:nxmaxn-1,0:nymaxn-1,maxnests)
474  real :: xlandusen(0:nxmaxn-1,0:nymaxn-1,numclass,maxnests)
475
476
477  ! 3d nested fields
478  !*****************
479
480  real :: uun(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
481  real :: vvn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
482  real :: wwn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
483  real :: ttn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
484  real :: qvn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
485  real :: pvn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
486  integer(kind=1) :: cloudsn(0:nxmaxn-1,0:nymaxn-1,0:nzmax,numwfmem,maxnests)
487  integer :: cloudsnh(0:nxmaxn-1,0:nymaxn-1,numwfmem,maxnests)
488  real :: rhon(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
489  real :: drhodzn(0:nxmaxn-1,0:nymaxn-1,nzmax,numwfmem,maxnests)
490  real :: tthn(0:nxmaxn-1,0:nymaxn-1,nuvzmax,numwfmem,maxnests)
491  real :: qvhn(0:nxmaxn-1,0:nymaxn-1,nuvzmax,numwfmem,maxnests)
492
493  ! 2d nested fields
494  !*****************
495
496  real :: psn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
497  real :: sdn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
498  real :: msln(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
499  real :: tccn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
500  real :: u10n(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
501  real :: v10n(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
502  real :: tt2n(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
503  real :: td2n(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
504  real :: lsprecn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
505  real :: convprecn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
506  real :: sshfn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
507  real :: ssrn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
508  real :: surfstrn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
509  real :: ustarn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
510  real :: wstarn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
511  real :: hmixn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
512  real :: tropopausen(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
513  real :: olin(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests)
514  ! real :: diffkn(0:nxmaxn-1,0:nymaxn-1,1,numwfmem,maxnests) ! not in use?
515  real :: vdepn(0:nxmaxn-1,0:nymaxn-1,maxspec,numwfmem,maxnests)
516
517
518  !*************************************************
519  ! Certain auxiliary variables needed for the nests
520  !*************************************************
521
522  real :: xresoln(0:maxnests),yresoln(0:maxnests)
523
524  ! xresoln, yresoln   Factors by which the resolutions in the nests
525  !               are enhanced compared to mother grid
526
527  real :: xln(maxnests),yln(maxnests),xrn(maxnests),yrn(maxnests)
528
529  ! xln,yln,xrn,yrn    Corner points of nested grids in grid coordinates
530  !               of mother grid
531
532
533  !******************************************************
534  ! Variables defining the polar stereographic projection
535  !******************************************************
536
537  logical :: xglobal,sglobal,nglobal
538  real :: switchnorthg,switchsouthg
539
540  !xglobal             T for global fields, F for limited area fields
541  !sglobal             T if domain extends towards south pole
542  !nglobal             T if domain extends towards north pole
543  !switchnorthg,switchsouthg   same as parameters switchnorth,
544  !                    switchsouth, but in grid units
545
546  real :: southpolemap(9),northpolemap(9)
547
548  !southpolemap,northpolemap   define stereographic projections
549  !                    at the two poles
550
551
552  !******************
553  ! Landuse inventory
554  ! Sabine Eckhardt Dec 06: change to new landuse inventary - 11 classes, 1200 x 600 global
555  !******************
556
557  integer(kind=1) :: landinvent(1200,600,6)
558  real :: z0(numclass)
559
560  ! landinvent         landuse inventory (numclass=11 classes)
561  ! z0                  roughness length for the landuse classes
562
563
564
565  !**************************************************************************
566  ! Variables characterizing the output grid and containing the model results
567  !**************************************************************************
568
569  integer :: numxgrid,numygrid,numzgrid
570  real :: dxout,dyout,outlon0,outlat0,xoutshift,youtshift
571  integer :: numxgridn,numygridn
572  real :: dxoutn,dyoutn,outlon0n,outlat0n,xoutshiftn,youtshiftn
573  !real outheight(maxzgrid),outheighthalf(maxzgrid)
574  logical :: DEP,DRYDEP,DRYDEPSPEC(maxspec),WETDEP,OHREA,ASSSPEC
575
576  ! numxgrid,numygrid       number of grid points in x,y-direction
577  ! numxgridn,numygridn     number of grid points in x,y-direction for nested output grid
578  ! numzgrid                number of vertical levels of output grid
579  ! dxout,dyout             grid distance of output grid
580  ! dxoutn,dyoutn           grid distance of nested output grid
581  ! outlon0,outlat0         lower left corner of output grid
582  ! outlon0n,outlat0n       lower left corner of nested output grid
583  ! xoutshift,youtshift     xlon0-outlon0, ylat0-outlat0
584  ! xoutshiftn,youtshiftn   xlon0-outlon0n, ylat0-outlat0n
585  ! outheight [m]           upper levels of the output grid
586  ! outheighthalf [m]       half (middle) levels of the output grid cells
587  ! DEP                     .true., if either dry or wet depos. is switched on
588  ! DRYDEP                  .true., if dry deposition is switched on
589  ! DRYDEPSPEC              .true., if dry deposition is switched on for that species
590  ! WETDEP                  .true., if wet deposition is switched on
591  ! OHREA                   .true., if OH reaction is switched on
592  ! ASSSPEC                 .true., if there are two species asscoiated
593  !                    (i.e. transfer of mass between these two occurs
594
595
596
597  !  if output for each releasepoint shall be created maxpointspec=number of releasepoints
598  !  else maxpointspec is 1 -> moved to unc_mod
599  !  the OUTGRID is moved to the module outg_mod
600  !******************************************************************************
601
602  !real gridunc(0:maxxgrid-1,0:maxygrid-1,maxzgrid,maxspec,
603  !    +             maxpointspec_act,nclassunc,maxageclass)
604  !real griduncn(0:maxxgridn-1,0:maxygridn-1,maxzgrid,maxspec,
605  !    +              maxpointspec_act,nclassunc,maxageclass)
606  !real wetgridunc(0:maxxgrid-1,0:maxygrid-1,maxspec,
607  !    +                maxpointspec_act,nclassunc,maxageclass)
608  !real wetgriduncn(0:maxxgridn-1,0:maxygridn-1,maxspec,
609  !    +ct                 maxpointspec,nclassunc,maxageclass)
610  !real drygridunc(0:maxxgrid-1,0:maxygrid-1,maxspec,maxpointspec,
611  !    +                nclassunc,maxageclass)
612  !real drygriduncn(0:maxxgridn-1,0:maxygridn-1,maxspec,
613  !    +                 maxpointspec,nclassunc,maxageclass)
614
615  !real oroout(0:maxxgrid-1,0:maxygrid-1)
616  !real orooutn(0:maxxgridn-1,0:maxygridn-1)
617  !     real area(0:maxxgrid-1,0:maxygrid-1)
618  !real arean(0:maxxgridn-1,0:maxygridn-1)
619  !real volume(0:maxxgrid-1,0:maxygrid-1,maxzgrid)
620  !real volumen(0:maxxgridn-1,0:maxygridn-1,maxzgrid)
621
622  !real areaeast(0:maxxgrid-1,0:maxygrid-1,maxzgrid)
623  !real areanorth(0:maxxgrid-1,0:maxygrid-1,maxzgrid)
624
625
626  ! gridunc,griduncn        uncertainty of outputted concentrations
627  ! wetgridunc,wetgriduncn  uncertainty of accumulated wet deposited mass on output grid
628  ! drygridunc,drygriduncn  uncertainty of accumulated dry deposited mass on output grid
629  ! oroout,orooutn [m]      height of model topography at output grid
630  ! area,arean [m2]         area of each grid cell
631  ! volume,volumen [m3]     volume of each grid cell
632  ! ... field names with n at the end indicate a nested output grid
633
634
635  !***********************************
636  ! Variables defining receptor points
637  !***********************************
638
639  real :: xreceptor(maxreceptor),yreceptor(maxreceptor)
640  real :: receptorarea(maxreceptor)
641  real :: creceptor(maxreceptor,maxspec)
642  character(len=16) :: receptorname(maxreceptor)
643  integer :: numreceptor
644
645  ! xreceptor,yreceptor     receptor position
646  ! creceptor               concentrations at receptor points
647  ! receptorarea            area of 1*1 grid cell at receptor point
648
649
650
651  !***************************************
652  ! Variables characterizing each particle
653  !***************************************
654
655  integer :: numpart=0
656  integer :: numparticlecount
657
658  integer, allocatable, dimension(:) :: itra1, npoint, nclass, idt, itramem, itrasplit
659
660  real(kind=dp), allocatable, dimension(:) :: xtra1, ytra1
661  real, allocatable, dimension(:) :: ztra1
662  real, allocatable, dimension(:,:) :: xmass1
663
664  ! eso: Moved from timemanager
665  real, allocatable, dimension(:) :: uap,ucp,uzp,us,vs,ws
666  integer(kind=2), allocatable, dimension(:) :: cbt
667
668
669  ! numpart                 actual number of particles in memory
670  ! itra1 (maxpart) [s]     temporal positions of the particles
671  ! npoint(maxpart)         indicates the release point of each particle
672  ! nclass (maxpart)        one of nclassunc classes to which the particle is attributed
673  ! itramem (maxpart) [s]   memorized release times of the particles
674  ! itrasplit (maxpart) [s] next time when particle is to be split into two
675  ! idt(maxpart) [s]        time step to be used for next integration
676  ! numparticlecount        counts the total number of particles that have been released
677  ! xtra1,ytra1,ztra1       spatial positions of the particles
678  ! xmass1 [kg]             particle masses
679 
680
681
682  !*******************************************************
683  ! Info table on available chemical species/radionuclides
684  !*******************************************************
685
686  !character*10 specname(maxtable)
687  !real decaytime(maxtable),wetscava(maxtable),wetscavb(maxtable)
688  !real drydiff(maxtable),dryhenry(maxtable),dryactiv(maxtable)
689  !real partrho(maxtable),partmean(maxtable),partsig(maxtable)
690  !real dryvelo(maxtable),weightmol(maxtable),ohreact(maxtable)
691
692  ! specname            Name of chemical species/radionuclide
693  ! decaytime           Half time of radionuclides
694  ! wetscava, wetscavb  Parameters for calculating scavenging coefficients
695  ! drydiff             diffusivitiy of species relative to diff. of H2O
696  ! dryhenry [M/atm]    Henry constant
697  ! dryactiv            reactivity relative to that of O3
698  ! partrho [kg/m3]     density of particles
699  ! partmean [m]        mean diameter of particles
700  ! partsig [m]         mean stand. deviation of particle diameter
701  ! dryvelo [cm/s]      constant dry deposition velocity
702  ! weightmol [g/mol]   molecular weight
703  ! ohreact             OH reaction rate
704
705
706  !********************
707  ! Random number field
708  !********************
709
710  real :: rannumb(maxrand)
711
712  ! rannumb                 field of normally distributed random numbers
713 
714  !********************************************************************
715  ! variables to control stability of CBL scheme under variation
716  ! of statistics in time and space
717  !********************************************************************
718  integer :: nan_count,nan_count2,sum_nan_count(3600),maxtl=1200
719  !added by mc , note that for safety sum_nan_count(N) with N>maxtl
720
721  !********************************************************************
722  ! variables to test well-mixed state of CBL scheme not to be included in final release
723  !********************************************************************
724  real :: well_mixed_vector(50),h_well,well_mixed_norm,avg_air_dens(50),avg_ol,avg_wst,avg_h
725  ! modified by mc to test well-mixed for cbl
726
727  !********************
728  ! Verbosity, testing flags, namelist I/O
729  !********************   
730  integer :: verbosity=0
731  integer :: info_flag=0
732  integer :: count_clock, count_clock0,  count_rate, count_max
733  real    :: tins
734  logical, parameter :: nmlout=.false.
735
736  ! These variables are used to avoid having separate versions of
737  ! files in cases where differences with MPI version is minor (eso)
738  !*****************************************************************
739  integer :: mpi_mode=0 ! .gt. 0 if running MPI version
740  logical :: lroot=.true. ! true if serial version, or if MPI and root process
741
742  contains
743      subroutine com_mod_allocate(nmpart)
744!*******************************************************************************   
745! Dynamic allocation of arrays
746!
747!*******************************************************************************
748    implicit none
749
750    integer, intent(in) :: nmpart
751   
752! Arrays previously static of size maxpart
753    allocate(itra1(nmpart),npoint(nmpart),nclass(nmpart),&
754         & idt(nmpart),itramem(nmpart),itrasplit(nmpart),&
755         & xtra1(nmpart),ytra1(nmpart),ztra1(nmpart),&
756         & xmass1(nmpart, maxspec))
757
758    allocate(uap(nmpart),ucp(nmpart),uzp(nmpart),us(nmpart),&
759         & vs(nmpart),ws(nmpart),cbt(nmpart))
760   
761!    allocate(memind(
762
763  end subroutine com_mod_allocate
764   
765
766end module com_mod
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