1 | MODULE stp_oce |
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2 | !!====================================================================== |
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3 | !! *** MODULE stp_oce *** |
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4 | !! Ocean time-stepping : module used in both initialisation phase and time stepping |
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5 | !! (i.e. nemo_init and stp or stp_MLF routines) |
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6 | !!====================================================================== |
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7 | !! History : 3.3 ! 2010-08 (C. Ethe) Original code - reorganisation of the initial phase |
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8 | !! 3.7 ! 2014-01 (G. Madec) LDF simplication |
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9 | !!---------------------------------------------------------------------- |
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10 | USE oce ! ocean dynamics and tracers variables |
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11 | USE dom_oce ! ocean space and time domain variables |
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12 | |
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13 | USE daymod ! calendar (day routine) |
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14 | |
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15 | USE sbc_oce ! surface boundary condition: ocean |
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16 | USE sbcmod ! surface boundary condition (sbc routine) |
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17 | USE sbcrnf ! surface boundary condition: runoff variables |
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18 | USE sbccpl ! surface boundary condition: coupled formulation (call send at end of step) |
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19 | USE sbcapr ! surface boundary condition: atmospheric pressure |
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20 | USE sbcwave ! Wave intialisation |
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21 | USE tide_mod ! tides |
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22 | |
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23 | USE bdy_oce , ONLY : ln_bdy |
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24 | USE bdydta ! open boundary condition data (bdy_dta routine) |
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25 | USE bdytra ! bdy cond. for tracers (bdy_tra routine) |
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26 | USE bdydyn3d ! bdy cond. for baroclinic vel. (bdy_dyn3d routine) |
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27 | |
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28 | USE isf_oce ! ice shelf boundary condition |
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29 | USE isfstp ! ice shelf boundary condition (isf_stp routine) |
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30 | |
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31 | USE sshwzv ! vertical velocity and ssh (ssh_nxt routine) |
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32 | ! (ssh_swp routine) |
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33 | ! (wzv routine) |
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34 | USE domvvl ! variable vertical scale factors (dom_vvl_sf_nxt routine) |
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35 | ! (dom_vvl_sf_swp routine) |
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36 | |
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37 | USE divhor ! horizontal divergence (div_hor routine) |
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38 | USE dynadv ! advection (dyn_adv routine) |
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39 | USE dynvor ! vorticity term (dyn_vor routine) |
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40 | USE dynhpg ! hydrostatic pressure grad. (dyn_hpg routine) |
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41 | USE dynldf ! lateral momentum diffusion (dyn_ldf routine) |
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42 | USE dynzdf ! vertical diffusion (dyn_zdf routine) |
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43 | USE dynspg ! surface pressure gradient (dyn_spg routine) |
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44 | USE dynatf ! time-filtering (dyn_atf routine) |
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45 | |
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46 | USE traqsr ! solar radiation penetration (tra_qsr routine) |
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47 | USE traisf ! ice shelf (tra_isf routine) |
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48 | USE trasbc ! surface boundary condition (tra_sbc routine) |
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49 | USE trabbc ! bottom boundary condition (tra_bbc routine) |
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50 | USE trabbl ! bottom boundary layer (tra_bbl routine) |
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51 | USE tradmp ! internal damping (tra_dmp routine) |
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52 | USE traadv ! advection scheme control (tra_adv_ctl routine) |
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53 | USE traldf ! lateral mixing (tra_ldf routine) |
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54 | USE trazdf ! vertical mixing (tra_zdf routine) |
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55 | USE traatf ! time filtering (tra_atf routine) |
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56 | USE tranpc ! non-penetrative convection (tra_npc routine) |
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57 | |
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58 | USE eosbn2 ! equation of state (eos_bn2 routine) |
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59 | |
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60 | USE stopar ! Stochastic parametrization (sto_par routine) |
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61 | USE stopts |
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62 | |
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63 | USE ldfslp ! iso-neutral slopes (ldf_slp routine) |
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64 | USE ldfdyn ! lateral eddy viscosity coef. (ldf_dyn routine) |
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65 | USE ldftra ! lateral eddy diffusive coef. (ldf_tra routine) |
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66 | |
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67 | USE zdf_oce ! ocean vertical physics variables |
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68 | USE zdfphy ! vertical physics manager (zdf_phy_init routine) |
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69 | USE zdfdrg , ONLY : ln_drgimp ! implicit top/bottom friction |
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70 | USE zdfosm , ONLY : osm_rst, dyn_osm, tra_osm ! OSMOSIS routines used in step.F90 |
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71 | |
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72 | USE diu_layers ! diurnal SST bulk and coolskin routines |
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73 | USE sbc_oce ! surface fluxes |
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74 | |
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75 | USE zpshde ! partial step: hor. derivative (zps_hde routine) |
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76 | |
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77 | USE diawri ! Standard run outputs (dia_wri routine) |
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78 | USE diaptr ! poleward transports (dia_ptr routine) |
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79 | USE diadct ! sections transports (dia_dct routine) |
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80 | USE diaar5 ! AR5 diagnosics (dia_ar5 routine) |
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81 | USE diahth ! thermocline depth (dia_hth routine) |
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82 | USE diahsb ! heat, salt and volume budgets (dia_hsb routine) |
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83 | USE diacfl ! CFL diagnostics (dia_cfl routine) |
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84 | USE diaobs ! Observation operator (dia_obs routine) |
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85 | USE diadetide ! Weights computation for daily detiding of model diagnostics |
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86 | USE diamlr ! IOM context management for multiple-linear-regression analysis |
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87 | USE flo_oce ! floats variables |
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88 | USE floats ! floats computation (flo_stp routine) |
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89 | |
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90 | USE crsfld ! Standard output on coarse grid (crs_fld routine) |
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91 | |
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92 | USE asminc ! assimilation increments (tra_asm_inc routine) |
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93 | ! (dyn_asm_inc routine) |
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94 | USE asmbkg ! writing out state trajectory |
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95 | USE stpctl ! time stepping control (stp_ctl routine) |
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96 | USE restart ! ocean restart (rst_wri routine) |
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97 | USE prtctl ! Print control (prt_ctl routine) |
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98 | |
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99 | USE in_out_manager ! I/O manager |
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100 | USE iom ! |
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101 | USE lbclnk |
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102 | USE timing ! Timing |
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103 | |
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104 | #if defined key_xios |
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105 | USE xios ! I/O server |
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106 | #endif |
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107 | #if defined key_agrif |
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108 | USE agrif_oce_sponge ! Momemtum and tracers sponges |
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109 | USE agrif_all_update ! Main update driver |
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110 | #endif |
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111 | #if defined key_top |
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112 | USE trcstp, ONLY : trc_stp ! passive tracer time-stepping (trc_stp routine) |
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113 | #endif |
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114 | !!---------------------------------------------------------------------- |
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115 | !! NEMO/OCE 4.0 , NEMO Consortium (2018) |
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116 | !! $Id$ |
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117 | !! Software governed by the CeCILL license (see ./LICENSE) |
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118 | !!====================================================================== |
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119 | END MODULE stp_oce |
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