1 | MODULE trd_oce |
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2 | !!====================================================================== |
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3 | !! *** MODULE trd_oce *** |
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4 | !! Ocean trends : set tracer and momentum trend variables |
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5 | !!====================================================================== |
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6 | !! History : 1.0 ! 2004-08 (C. Talandier) Original code |
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7 | !!---------------------------------------------------------------------- |
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8 | USE par_oce ! ocean parameters |
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9 | USE trdmxl_oce ! ocean active mixed layer tracers trends variables |
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10 | USE trdvor_oce ! ocean vorticity trends variables |
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11 | |
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12 | IMPLICIT NONE |
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13 | PUBLIC |
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14 | |
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15 | ! !!* Namelist namtrd: diagnostics on dynamics/tracer trends * |
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16 | LOGICAL , PUBLIC :: ln_dyn_trd = .FALSE. !: (T) 3D momentum trends or (F) not |
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17 | LOGICAL , PUBLIC :: ln_tra_trd = .FALSE. !: (T) 3D tracer trends or (F) not |
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18 | LOGICAL , PUBLIC :: ln_KE_trd = .FALSE. !: (T) 3D Kinetic Energy trends or (F) not |
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19 | LOGICAL , PUBLIC :: ln_PE_trd = .FALSE. !: (T) 3D Potential Energy trends or (F) not |
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20 | LOGICAL , PUBLIC :: ln_vor_trd = .FALSE. !: (T) 3D barotropic vorticity trends or (F) not |
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21 | LOGICAL , PUBLIC :: ln_glo_trd = .FALSE. !: (T) global domain averaged diag for T, T^2, KE, and PE |
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22 | LOGICAL , PUBLIC :: ln_dyn_mxl = .FALSE. !: (T) 2D tracer trends averaged over the mixed layer |
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23 | LOGICAL , PUBLIC :: ln_tra_mxl = .FALSE. !: (T) 2D momentum trends averaged over the mixed layer |
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24 | INTEGER , PUBLIC :: nn_trd = 10 !: time step frequency for ln_glo_trd=T only |
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25 | |
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26 | LOGICAL , PUBLIC :: l_trdtra !: tracers trend flag (set from namelist in trdini) |
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27 | LOGICAL , PUBLIC :: l_trddyn !: momentum trend flag (set from namelist in trdini) |
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28 | |
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29 | # if ( defined key_trdtrc && defined key_iomput ) || defined key_trdmxl_trc |
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30 | LOGICAL , PUBLIC :: l_trdtrc = .TRUE. !: tracers trend flag |
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31 | # else |
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32 | LOGICAL , PUBLIC :: l_trdtrc = .FALSE. !: tracers trend flag |
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33 | # endif |
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34 | ! !!!* Active tracers trends indexes |
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35 | INTEGER, PUBLIC, PARAMETER :: jptot_tra = 20 !: Total trend nb: change it when adding/removing one indice below |
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36 | ! =============== ! |
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37 | INTEGER, PUBLIC, PARAMETER :: jptra_xad = 1 !: x- horizontal advection |
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38 | INTEGER, PUBLIC, PARAMETER :: jptra_yad = 2 !: y- horizontal advection |
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39 | INTEGER, PUBLIC, PARAMETER :: jptra_zad = 3 !: z- vertical advection |
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40 | INTEGER, PUBLIC, PARAMETER :: jptra_sad = 4 !: z- vertical advection |
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41 | INTEGER, PUBLIC, PARAMETER :: jptra_totad = 5 !: total advection |
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42 | INTEGER, PUBLIC, PARAMETER :: jptra_ldf = 6 !: lateral diffusion |
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43 | INTEGER, PUBLIC, PARAMETER :: jptra_zdf = 7 !: vertical diffusion |
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44 | INTEGER, PUBLIC, PARAMETER :: jptra_zdfp = 8 !: "PURE" vert. diffusion (ln_traldf_iso=T) |
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45 | INTEGER, PUBLIC, PARAMETER :: jptra_evd = 9 !: EVD term (convection) |
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46 | INTEGER, PUBLIC, PARAMETER :: jptra_bbc = 10 !: Bottom Boundary Condition (geoth. heating) |
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47 | INTEGER, PUBLIC, PARAMETER :: jptra_bbl = 11 !: Bottom Boundary Layer (diffusive and/or advective) |
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48 | INTEGER, PUBLIC, PARAMETER :: jptra_npc = 12 !: non-penetrative convection treatment |
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49 | INTEGER, PUBLIC, PARAMETER :: jptra_dmp = 13 !: internal restoring (damping) |
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50 | INTEGER, PUBLIC, PARAMETER :: jptra_qsr = 14 !: penetrative solar radiation |
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51 | INTEGER, PUBLIC, PARAMETER :: jptra_nsr = 15 !: non solar radiation / C/D on salinity (+runoff if ln_rnf=T) |
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52 | INTEGER, PUBLIC, PARAMETER :: jptra_atf = 16 !: Asselin time filter |
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53 | INTEGER, PUBLIC, PARAMETER :: jptra_tot = 17 !: Model total trend |
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54 | ! |
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55 | ! !!!* Passive tracers trends indices (use if "key_top" defined) |
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56 | INTEGER, PUBLIC, PARAMETER :: jptra_sms = 18 !: sources m. sinks |
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57 | INTEGER, PUBLIC, PARAMETER :: jptra_radn = 19 !: corr. trn<0 in trcrad |
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58 | INTEGER, PUBLIC, PARAMETER :: jptra_radb = 20 !: corr. trb<0 in trcrad (like atf) |
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59 | ! |
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60 | ! !!!* Momentum trends indices |
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61 | INTEGER, PUBLIC, PARAMETER :: jptot_dyn = 16 !: Total trend nb: change it when adding/removing one indice below |
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62 | ! =============== ! |
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63 | INTEGER, PUBLIC, PARAMETER :: jpdyn_hpg = 1 !: hydrostatic pressure gradient |
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64 | INTEGER, PUBLIC, PARAMETER :: jpdyn_spg = 2 !: surface pressure gradient |
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65 | INTEGER, PUBLIC, PARAMETER :: jpdyn_keg = 3 !: kinetic energy gradient or horizontal advection |
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66 | INTEGER, PUBLIC, PARAMETER :: jpdyn_rvo = 4 !: relative vorticity or metric term |
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67 | INTEGER, PUBLIC, PARAMETER :: jpdyn_pvo = 5 !: planetary vorticity |
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68 | INTEGER, PUBLIC, PARAMETER :: jpdyn_zad = 6 !: vertical advection |
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69 | INTEGER, PUBLIC, PARAMETER :: jpdyn_ldf = 7 !: horizontal diffusion |
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70 | INTEGER, PUBLIC, PARAMETER :: jpdyn_zdf = 8 !: vertical diffusion |
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71 | INTEGER, PUBLIC, PARAMETER :: jpdyn_bfr = 9 !: bottom stress |
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72 | INTEGER, PUBLIC, PARAMETER :: jpdyn_atf = 10 !: Asselin time filter |
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73 | INTEGER, PUBLIC, PARAMETER :: jpdyn_tau = 11 !: surface stress |
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74 | INTEGER, PUBLIC, PARAMETER :: jpdyn_bfri = 12 !: implicit bottom friction (ln_bfrimp=.TRUE.) |
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75 | INTEGER, PUBLIC, PARAMETER :: jpdyn_ken = 13 !: use for calculation of KE |
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76 | INTEGER, PUBLIC, PARAMETER :: jpdyn_spgflt = 14 !: filter contribution to surface pressure gradient (spg_flt) |
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77 | INTEGER, PUBLIC, PARAMETER :: jpdyn_spgexp = 15 !: explicit contribution to surface pressure gradient (spg_flt) |
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78 | INTEGER, PUBLIC, PARAMETER :: jpdyn_eivke = 16 !: K.E trend from Gent McWilliams scheme |
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79 | ! |
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80 | !!---------------------------------------------------------------------- |
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81 | !! NEMO/OPA 3.3 , NEMO Consortium (2010) |
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82 | !! $Id$ |
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83 | !! Software governed by the CeCILL licence (NEMOGCM/NEMO_CeCILL.txt) |
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84 | !!====================================================================== |
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85 | END MODULE trd_oce |
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