1 | !----------------------------------------------------------------------- |
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2 | &namisf ! Top boundary layer (ISF) (default: OFF) |
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3 | !----------------------------------------------------------------------- |
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4 | ! |
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5 | ! ---------------- ice shelf load ------------------------------- |
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6 | ! |
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7 | cn_isfload = 'uniform' ! scheme to compute ice shelf load (ln_isfcav = .true. in domain_cfg.nc) |
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8 | rn_isfload_T = -1.9 |
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9 | rn_isfload_S = 34.4 |
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10 | ! |
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11 | ! ---------------- ice shelf melt formulation ------------------------------- |
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12 | ! |
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13 | ln_isf = .false. ! activate ice shelf module |
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14 | ln_isfdebug = .false. ! add debug print in ISF code (global min/max/sum of specific variable) |
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15 | cn_isfdir = './' ! directory for all ice shelf input file |
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16 | ! |
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17 | ! ---------------- cavities opened ------------------------------- |
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18 | ! |
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19 | ln_isfcav_mlt = .false. ! ice shelf melting into the cavity (need ln_isfcav = .true. in domain_cfg.nc) |
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20 | cn_isfcav_mlt = '3eq' ! ice shelf melting formulation (spe/2eq/3eq/oasis) |
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21 | ! ! spe = fwfisf is read from a forcing field |
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22 | ! ! 2eq = ISOMIP like: 2 equations formulation (Hunter et al., 2006 for a short description) |
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23 | ! ! 3eq = ISOMIP+ like: 3 equations formulation (Asay-Davis et al., 2016 for a short description) |
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24 | ! ! oasis = fwfisf is given by oasis and pattern by file sn_isfcav_fwf |
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25 | ! ! cn_isfcav_mlt = 2eq or 3eq cases: |
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26 | cn_gammablk = 'vel' ! scheme to compute gammat/s (spe,ad15,hj99) |
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27 | ! ! spe = constant transfert velocity (rn_gammat0, rn_gammas0) |
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28 | ! ! vel = velocity dependent transfert velocity (u* * gammat/s) (Asay-Davis et al. 2016 for a short description) |
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29 | ! ! vel_stab = velocity and stability dependent transfert coeficient (Holland et al. 1999 for a complete description) |
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30 | rn_gammat0 = 1.4e-2 ! gammat coefficient used in spe, vel and vel_stab gamma computation method |
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31 | rn_gammas0 = 4.0e-4 ! gammas coefficient used in spe, vel and vel_stab gamma computation method |
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32 | ! |
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33 | rn_htbl = 30. ! thickness of the top boundary layer (Losh et al. 2008) |
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34 | ! ! 0 => thickness of the tbl = thickness of the first wet cell |
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35 | ! |
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36 | !* 'spe' and 'oasis' case |
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37 | !___________!_____________!___________________!___________!_____________!_________!___________!__________!__________!_______________! |
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38 | ! ! file name ! frequency (hours) ! variable ! time interp.! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! |
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39 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F) ! 'monthly' ! filename ! pairing ! filename ! |
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40 | sn_isfcav_fwf = 'isfmlt_cav', -12. , 'fwflisf' , .false. , .true. , 'yearly' , '' , '' , '' |
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41 | ! |
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42 | ! ---------------- cavities parametrised ------------------------------- |
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43 | ! |
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44 | ln_isfpar_mlt = .false. ! ice shelf melting parametrised |
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45 | cn_isfpar_mlt = 'spe' ! ice shelf melting parametrisation (spe/bg03/oasis) |
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46 | ! ! spe = fwfisf is read from a forcing field |
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47 | ! ! bg03 = melt computed using Beckmann and Goosse parametrisation |
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48 | ! ! oasis = fwfisf is given by oasis and pattern by file sn_isfpar_fwf |
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49 | ! |
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50 | !* all cases |
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51 | !___________!_____________!___________________!___________!_____________!_________!___________!__________!__________!_______________! |
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52 | ! ! file name ! frequency (hours) ! variable ! time interp.! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! |
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53 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F) ! 'monthly' ! filename ! pairing ! filename ! |
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54 | sn_isfpar_zmax = 'isfmlt_par', 0. ,'sozisfmax', .false. , .true. , 'yearly' , '' , '' , '' |
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55 | sn_isfpar_zmin = 'isfmlt_par', 0. ,'sozisfmin', .false. , .true. , 'yearly' , '' , '' , '' |
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56 | !* 'spe' and 'oasis' case |
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57 | sn_isfpar_fwf = 'isfmlt_par' , -12. ,'sofwfisf' , .false. , .true. , 'yearly' , '' , '' , '' |
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58 | !* 'bg03' case |
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59 | sn_isfpar_Leff = 'isfmlt_par', 0. ,'Leff' , .false. , .true. , 'yearly' , '' , '' , '' |
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60 | ! |
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61 | ! ---------------- ice sheet coupling ------------------------------- |
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62 | ! |
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63 | ln_isfcpl = .false. |
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64 | nn_drown = 10 ! number of iteration of the extrapolation loop (fill the new wet cells) |
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65 | ln_isfcpl_cons = .false. |
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66 | / |
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