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par_EEL_R6.h90 in branches/2013/dev_r3940_CNRS4_IOCRS/NEMOGCM/NEMO/OPA_SRC – NEMO

source: branches/2013/dev_r3940_CNRS4_IOCRS/NEMOGCM/NEMO/OPA_SRC/par_EEL_R6.h90 @ 4015

Last change on this file since 4015 was 4015, checked in by cetlod, 11 years ago

2013/dev_r3940_CNRS4_IOCRS: 1st step, add new routines for outputs coarsening

  • Property svn:keywords set to Id
File size: 5.0 KB
RevLine 
[3]1   !!---------------------------------------------------------------------
2   !!                     ***  par_EEL_R6.h90  ***   
3   !!   Ocean Domain : 6 km resolution Channel (EEL_R6 configuration)
4   !!---------------------------------------------------------------------
[247]5   !!----------------------------------------------------------------------
[2528]6   !! NEMO/OPA 3.3 , NEMO Consortium (2010)
[1152]7   !! $Id$
[2528]8   !! Software governed by the CeCILL licence (NEMOGCM/NEMO_CeCILL.txt)
[247]9   !!----------------------------------------------------------------------
[4015]10   CHARACTER (len=16) :: cp_cfg = "eel"  !: name of the configuration
11   INTEGER            :: jp_cfg = 6      !: resolution of the configuration (km)
12   INTEGER, PARAMETER ::     &
[3]13      ! data size              !!! * size of all the input files *
[15]14      jpidta  = 29,          &  !: 1st lateral dimension ( >= jpi )
15      jpjdta  = 83,          &  !: 2nd    "         "    ( >= jpj )
16      jpkdta  = 30,          &  !: number of levels      ( >= jpk )
[3]17
[4015]18   INTEGER            ::     &
[3]19      ! global domain size     !!! * full domain *
[15]20      jpiglo  = jpidta,      &  !: 1st dimension of global domain --> i
21      jpjglo  = jpjdta,      &  !: 2nd    "                  "    --> j
[3]22      ! starting position of the zoom
[15]23      jpizoom =   1   ,      &  !: left bottom (i,j) indices of the zoom
24      jpjzoom =   1   ,      &  !: in data domain indices
[3]25
26      ! Domain characteristics
[1528]27      jperio  =      1          !: lateral cond. type (between 0 and 6)
[3]28
29   !!  Values set to pp_not_used indicates that this parameter is not used in THIS config.
30   !!  Values set to pp_to_be_computed  indicates that variables will be computed in domzgr
[15]31   REAL(wp), PARAMETER ::   &  !:
32      pp_not_used       = 999999._wp ,  &  !: ???
33      pp_to_be_computed =      0._wp       !: ???
34
[3]35   !! Coefficients associated with the horizontal coordinate system (jphgr_msh /= 0 )
36
[15]37   INTEGER,PARAMETER   ::    & !:
38      jphgr_msh = 3            !: type of horizontal mesh
[3]39      !                        ! = 0 curvilinear coordinate on the sphere
40      !                        !     read in coordinate.nc file
41      !                        ! = 1 geographical mesh on the sphere
42      !                        !     with regular grid-spacing
43      !                        ! = 2 f-plane with regular grid-spacing
44      !                        ! = 3 beta-plane with regular grid-spacing
45      !                        ! = 4 Mercator grid with T/U point at the equator  with
46      !                        !     isotropic resolution (e1_deg)
47
48      !   ppglam0 , ppgphi0: coordinates of the lower leftmost T point of the grid.
49      !   The mercator grid starts only approximately at gphi0 because
50      !   of the constraint that the equator be a T point.
[389]51   REAL(wp) &
[392]52#if !defined key_agrif
[389]53      , PARAMETER  &
54#endif
55      ::     &  !:
[15]56      ppglam0  =    0.0_wp,   &  !: longitude of first raw and column T-point (jphgr_msh = 1)
[187]57      ppgphi0  =   35.0_wp,   &  !: latitude  of first raw and column T-point (jphgr_msh = 1)
[15]58      !                          !  latitude for the Coriolis or Beta parameter (jphgr_msh = 2 or 3)
59      ppe1_deg = pp_not_used,   &  !: zonal      grid-spacing (degrees)
60      ppe2_deg = pp_not_used,   &  !: meridional grid-spacing (degrees)
[3]61      !
[15]62      ppe1_m   = 6000.0_wp,   &  !: zonal      grid-spacing (meters )
63      ppe2_m   = 6000.0_wp       !: meridional grid-spacing (meters )
64
[3]65   !!  Coefficients associated with the vertical coordinate system
[15]66
67   REAL(wp), PARAMETER  ::       &  !:
68      &     ppsur = -2033.194295283385_wp   ,  &  !: Computed in domzgr
69      &     ppa0  =  155.8325369664153_wp   ,  &  !:
70      &     ppa1  =  146.3615918601890_wp   ,  &  !:
[3]71      !
[15]72      &     ppkth =  17.28520372419791_wp   ,  &  !: (non dimensional): gives the approximate
[56]73      !                                           !: layer number above which  stretching will
74      !                                           !: be maximum. Usually of order jpk/2.
[15]75      &     ppacr =  5.000000000000000_wp         !: (non dimensional): stretching factor
[56]76      !                                           !: for the grid. The highest zacr, the smallest
77      !                                           !: the stretching.
[3]78
[15]79
[3]80   !!  If both ppa0 ppa1 and ppsur are specified to 0, then
81   !!  they are computed from ppdzmin, pphmax , ppkth, ppacr in dom_zgr
[56]82   !!
[15]83   REAL(wp), PARAMETER ::        &  !:
[56]84      &     ppdzmin = pp_not_used           ,  &  !: (meters) vertical thickness of the top layer
85      &     pphmax  = pp_not_used                 !: (meters) Maximum depth of the ocean gdepw(jpk)
[2528]86   LOGICAL,  PARAMETER ::        &
87      &     ldbletanh = .FALSE.                   !: Use/do not use double tanf function for vertical coordinates
88   REAL(wp), PARAMETER ::        &
89      &     ppa2    = pp_not_used           ,  &  !: Double tanh function parameters
90      &     ppkth2  = pp_not_used           ,  &  !:
91      &     ppacr2  = pp_not_used                 !:
[3]92   !!---------------------------------------------------------------------
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