source: flexpart.git/src/par_mod.f90 @ f06b72a

GFS_025dev
Last change on this file since f06b72a was f06b72a, checked in by Espen Sollum ATMOS <eso@…>, 3 years ago

MPI: Fix for initial condition field

  • Property mode set to 100644
File size: 12.2 KB
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1! SPDX-FileCopyrightText: FLEXPART 1998-2019, see flexpart_license.txt
2! SPDX-License-Identifier: GPL-3.0-or-later
3
4!*******************************************************************************
5!   Include file for calculation of particle trajectories (Program FLEXPART)   *
6!        This file contains the parameter statements used in FLEXPART          *
7!                                                                              *
8!        Author: A. Stohl                                                      *
9!                                                                              *
10!        1997                                                                  *
11!                                                                              *
12!        Update 15 August 2013 IP                                              *
13!                                                                              *
14!                                                                              *
15!*******************************************************************************
16
17module par_mod
18
19  implicit none
20
21  !****************************************************************
22  ! Parameters defining KIND parameter for double/single precision
23  !****************************************************************
24
25  integer,parameter :: dp=selected_real_kind(P=15)
26  integer,parameter :: sp=selected_real_kind(6)
27
28  !****************************************************************
29  ! dep_prec sets the precision for deposition calculations (sp or
30  ! dp). sp is default, dp can be used for increased precision.
31  !****************************************************************
32
33  integer,parameter :: dep_prec=sp
34
35  !****************************************************************
36  ! Set to F to disable use of kernel for concentrations/deposition
37  !****************************************************************
38
39  logical, parameter :: lusekerneloutput=.true.
40
41  !*********************************************************************
42  ! Set to T to change output units to number of particles per grid cell
43  !*********************************************************************
44  logical, parameter :: lparticlecountoutput=.false.
45
46  !***********************************************************
47  ! number of directories/files used for FLEXPART input/output
48  !***********************************************************
49
50  integer,parameter :: numpath=4
51
52  ! numpath                 Number of different pathnames for input/output files
53
54
55  !*****************************
56  ! Physical and other constants
57  !*****************************
58
59  real,parameter :: pi=3.14159265, r_earth=6.371e6, r_air=287.05, ga=9.81
60  real,parameter :: cpa=1004.6, kappa=0.286, pi180=pi/180., vonkarman=0.4
61  ! additional constants RLT Aug-2017
62  real,parameter :: rgas=8.31447
63  real,parameter :: r_water=461.495
64
65  ! pi                      number "pi"
66  ! pi180                   pi/180.
67  ! r_earth                 radius of earth [m]
68  ! r_air                   individual gas constant for dry air [J/kg/K]
69  ! ga                      gravity acceleration of earth [m/s**2]
70  ! cpa                     specific heat for dry air
71  ! kappa                   exponent of formula for potential temperature
72  ! vonkarman               von Karman constant
73  ! rgas                    universal gas constant [J/mol/K]
74  ! r_water                 specific gas constant for water vapor [J/kg/K]
75
76  real,parameter :: karman=0.40, href=15., convke=2.0
77  real,parameter :: hmixmin=100., hmixmax=4500. !, turbmesoscale=0.16
78  !real,parameter :: d_trop=50., d_strat=0.1
79  real :: d_trop=50., d_strat=0.1, turbmesoscale=0.16 ! turbulence factors can change for different runs
80  real,parameter :: rho_water=1000. !ZHG 2015 [kg/m3]
81  !ZHG MAR2016
82  real,parameter :: incloud_ratio=6.2
83
84  ! karman                  Karman's constant
85  ! href [m]                Reference height for dry deposition
86  ! konvke                  Relative share of kinetic energy used for parcel lifting
87  ! hmixmin,hmixmax         Minimum and maximum allowed PBL height
88  ! turbmesoscale           the factor by which standard deviations of winds at grid
89  !                    points surrounding the particle positions are scaled to
90  !                    yield the scales for the mesoscale wind velocity fluctuations
91  ! d_trop [m2/s]           Turbulent diffusivity for horizontal components in the troposphere
92  ! d_strat [m2/s]          Turbulent diffusivity for vertical component in the stratosphere
93
94  real,parameter :: xmwml=18.016/28.960
95
96  ! xmwml   ratio of molar weights of water vapor and dry air
97  !****************************************************
98  ! Constants related to the stratospheric ozone tracer
99  !****************************************************
100
101  real,parameter :: ozonescale=60., pvcrit=2.0
102
103  ! ozonescale              ppbv O3 per PV unit
104  ! pvcrit                  PV level of the tropopause
105
106
107
108  !********************
109  ! Some time constants
110  !********************
111
112  integer,parameter :: idiffnorm=10800, idiffmax=2*idiffnorm, minstep=1
113
114  ! idiffnorm [s]           normal time interval between two wind fields
115  ! idiffmax [s]            maximum time interval between two wind fields
116  ! minstep [s]             minimum time step to be used within FLEXPART
117
118
119  !*****************************************************************
120  ! Parameters for polar stereographic projection close to the poles
121  !*****************************************************************
122
123  real,parameter :: switchnorth=75., switchsouth=-75.
124
125  ! switchnorth    use polar stereographic grid north of switchnorth
126  ! switchsouth    use polar stereographic grid south of switchsouth
127
128
129  !*********************************************
130  ! Maximum dimensions of the input mother grids
131  !*********************************************
132 
133  ! ECMWF
134! integer,parameter :: nxmax=361,nymax=181,nuvzmax=92,nwzmax=92,nzmax=92,nxshift=359 ! 1.0 degree 92 level
135  integer,parameter :: nxmax=361,nymax=181,nuvzmax=138,nwzmax=138,nzmax=138,nxshift=0 ! 1.0 degree 138 level
136!   integer,parameter :: nxmax=361,nymax=181,nuvzmax=138,nwzmax=138,nzmax=138,nxshift=359 ! 1.0 degree 138 level
137! integer,parameter :: nxmax=721,nymax=361,nuvzmax=138,nwzmax=138,nzmax=138,nxshift=359  ! 0.5 degree 138 level
138!  integer,parameter :: nxmax=181,nymax=91,nuvzmax=92,nwzmax=92,nzmax=92,nxshift=0  ! CERA 2.0 degree 92 level
139
140! GFS
141   ! integer,parameter :: nxmax=361,nymax=181,nuvzmax=138,nwzmax=138,nzmax=138
142   ! integer :: nxshift=0 ! shift not fixed for the executable
143
144
145  !*********************************************
146  ! Maximum dimensions of the nested input grids
147  !*********************************************
148
149  integer,parameter :: maxnests=0,nxmaxn=0,nymaxn=0
150
151  ! nxmax,nymax        maximum dimension of wind fields in x and y
152  !                    direction, respectively
153  ! nuvzmax,nwzmax     maximum dimension of (u,v) and (w) wind fields in z
154  !                    direction (for fields on eta levels)
155  ! nzmax              maximum dimension of wind fields in z direction
156  !                    for the transformed Cartesian coordinates
157  ! nxshift            for global grids (in x), the grid can be shifted by
158  !                    nxshift grid points, in order to accomodate nested
159  !                    grids, and output grids overlapping the domain "boundary"
160  !                    nxshift must not be negative; "normal" setting would be 0
161
162 
163  integer,parameter :: nconvlevmax = nuvzmax-1
164  integer,parameter :: na = nconvlevmax+1
165
166  ! ntracermax         maximum number of tracer species in convection
167  ! nconvlevmax        maximum number of levels for convection
168  ! na                 parameter used in Emanuel's convect subroutine
169
170
171  !*********************************
172  ! Parmaters for GRIB file decoding
173  !*********************************
174
175  integer,parameter :: jpack=4*nxmax*nymax, jpunp=4*jpack
176
177  ! jpack,jpunp             maximum dimensions needed for GRIB file decoding
178
179
180  !**************************************
181  ! Maximum dimensions of the output grid
182  !**************************************
183
184  !integer,parameter :: maxageclass=1,maxzgrid=10,nclassunc=1
185  integer,parameter :: maxageclass=1,nclassunc=1
186
187  ! nclassunc               number of classes used to calculate the uncertainty
188  !                         of the output
189  ! maxageclass             maximum number of age classes used for output
190
191  ! Sabine Eckhardt, June, 2008
192  ! the dimensions of the OUTGRID are now set dynamically during runtime
193  ! maxxgrid,maxygrid,maxzgrid    maximum dimensions in x,y,z direction
194  ! maxxgridn,maxygridn           maximum dimension of the nested grid
195  !integer maxxgrid,maxygrid,maxzgrid,maxxgridn,maxygridn
196  !integer,parameter :: maxxgrid=361,maxygrid=181,maxxgridn=0,maxygridn=0)
197
198  integer,parameter :: maxreceptor=20
199
200  ! maxreceptor             maximum number of receptor points
201
202
203  !**************************************************
204  ! Maximum number of particles, species, and similar
205  !**************************************************
206
207  integer,parameter :: maxpart=1000000
208  integer,parameter :: maxspec=6
209
210  real,parameter :: minmass=0.0001
211
212  ! maxpart                 Maximum number of particles
213  ! maxspec                 Maximum number of chemical species per release
214  ! minmass                 Terminate particles carrying less mass
215
216  ! maxpoint is also set dynamically during runtime
217  ! maxpoint                Maximum number of release locations
218
219  ! ---------
220  ! Sabine Eckhardt: change of landuse inventary numclass=13
221  ! ---------
222  integer,parameter :: maxwf=50000, maxtable=1000, numclass=13, ni=11
223  integer,parameter :: numwfmem=2 ! Serial version/MPI with 2 fields
224  !integer,parameter :: numwfmem=3 ! MPI with 3 fields
225
226  ! maxwf                   maximum number of wind fields to be used for simulation
227  ! maxtable                Maximum number of chemical species that can be
228  !                         tabulated for FLEXPART
229  ! numclass                Number of landuse classes available to FLEXPART
230  ! ni                      Number of diameter classes of particles
231  ! numwfmem                Number of windfields kept in memory. 2 for serial
232  !                         version, 2 or 3 for MPI version
233
234  !**************************************************************************
235  ! dimension of the OH field
236  !**************************************************************************
237  integer,parameter :: maxxOH=72, maxyOH=46, maxzOH=7
238
239  !**************************************************************************
240  ! Maximum number of particles to be released in a single atmospheric column
241  ! for the domain-filling trajectories option
242  !**************************************************************************
243
244  integer,parameter :: maxcolumn=3000
245
246
247  !*********************************
248  ! Dimension of random number field
249  !*********************************
250
251  integer,parameter :: maxrand=1000000
252
253  ! maxrand                 number of random numbers used
254 
255
256  !*****************************************************
257  ! Number of clusters to be used for plume trajectories
258  !*****************************************************
259
260  integer,parameter :: ncluster=5
261
262  !************************************
263  ! Unit numbers for input/output files
264  !************************************
265
266  integer,parameter :: unitpath=1, unitcommand=1, unitageclasses=1, unitgrid=1
267  integer,parameter :: unitavailab=1, unitreleases=88, unitpartout=93, unitpartout_average=105
268  integer,parameter :: unitpartin=93, unitflux=98, unitouttraj=96
269  integer,parameter :: unitvert=1, unitoro=1, unitpoin=1, unitreceptor=1
270  integer,parameter :: unitoutgrid=97, unitoutgridppt=99, unitoutinfo=1
271  integer,parameter :: unitspecies=1, unitoutrecept=91, unitoutreceptppt=92
272  integer,parameter :: unitlsm=1, unitsurfdata=1, unitland=1, unitwesely=1
273  integer,parameter :: unitOH=1
274  integer,parameter :: unitdates=94, unitheader=90,unitheader_txt=100, unitshortpart=95, unitprecip=101
275  integer,parameter :: unitboundcond=89
276  integer,parameter :: unittmp=101
277! RLT
278  integer,parameter :: unitoutfactor=102
279
280!******************************************************
281! integer code for missing values, used in wet scavenging (PS, 2012)
282!******************************************************
283
284  integer,parameter ::  icmv=-9999
285
286
287end module par_mod
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