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ocean_dia.ncの中身(その1)
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ocean_dia.ncの中身(その1)
NetCDF-3 Classic ocean_dia.nc {
dimensions:
xi_rho = 199 ; xi_u = 198 ; xi_v = 199 ; xi_psi = 198 ; eta_rho = 149 ; eta_u = 149 ; eta_v = 148 ; eta_psi = 148 ; s_rho = 21 ; s_w = 22 ; tracer = 2 ; boundary = 4 ; ocean_time = UNLIMITED ; (9 currently)
variables:
// Preference 'PRESERVE_FVD': false, // dimensions consistent with ncBrowse, not with native MATLAB netcdf package. int32 ntimes([]), shape = [1] ntimes:long_name = "number of long time-steps" int32 ndtfast([]), shape = [1] ndtfast:long_name = "number of short time-steps" double dt([]), shape = [1] dt:long_name = "size of long time-steps" dt:units = "second" double dtfast([]), shape = [1] dtfast:long_name = "size of short time-steps" dtfast:units = "second" double dstart([]), shape = [1] dstart:long_name = "time stamp assigned to model initilization" dstart:units = "days since 0001-01-01 00:00:00" dstart:calendar = "julian" int32 nHIS([]), shape = [1] nHIS:long_name = "number of time-steps between history records" int32 ndefHIS([]), shape = [1] ndefHIS:long_name = "number of time-steps between the creation of history files" int32 nRST([]), shape = [1] nRST:long_name = "number of time-steps between restart records" nRST:cycle = "only latest two records are maintained" int32 ntsAVG([]), shape = [1] ntsAVG:long_name = "starting time-step for accumulation of time-averaged fields" int32 nAVG([]), shape = [1] nAVG:long_name = "number of time-steps between time-averaged records" int32 ndefAVG([]), shape = [1] ndefAVG:long_name = "number of time-steps between the creation of average files" int32 ntsDIA([]), shape = [1] ntsDIA:long_name = "starting time-step for accumulation of diagnostic fields" int32 nDIA([]), shape = [1] nDIA:long_name = "number of time-steps between diagnostic records" int32 ndefDIA([]), shape = [1] ndefDIA:long_name = "number of time-steps between the creation of diagnostic files" double Falpha([]), shape = [1] Falpha:long_name = "Power-law shape barotropic filter parameter" double Fbeta([]), shape = [1] Fbeta:long_name = "Power-law shape barotropic filter parameter" double Fgamma([]), shape = [1] Fgamma:long_name = "Power-law shape barotropic filter parameter" double nl_tnu2(tracer), shape = [2] nl_tnu2:long_name = "nonlinear model Laplacian mixing coefficient for tracers" nl_tnu2:units = "meter2 second-1" double nl_visc2([]), shape = [1] nl_visc2:long_name = "nonlinear model Laplacian mixing coefficient for momentum" nl_visc2:units = "meter2 second-1" double Akt_bak(tracer), shape = [2] Akt_bak:long_name = "background vertical mixing coefficient for tracers" Akt_bak:units = "meter2 second-1" double Akv_bak([]), shape = [1] Akv_bak:long_name = "background vertical mixing coefficient for momentum" Akv_bak:units = "meter2 second-1" double Akk_bak([]), shape = [1] Akk_bak:long_name = "background vertical mixing coefficient for turbulent energy" Akk_bak:units = "meter2 second-1" double Akp_bak([]), shape = [1] Akp_bak:long_name = "background vertical mixing coefficient for length scale" Akp_bak:units = "meter2 second-1" double rdrg([]), shape = [1] rdrg:long_name = "linear drag coefficient" rdrg:units = "meter second-1" double rdrg2([]), shape = [1] rdrg2:long_name = "quadratic drag coefficient" double Zob([]), shape = [1] Zob:long_name = "bottom roughness" Zob:units = "meter" double Zos([]), shape = [1] Zos:long_name = "surface roughness" Zos:units = "meter" double gls_p([]), shape = [1] gls_p:long_name = "stability exponent" double gls_m([]), shape = [1] gls_m:long_name = "turbulent kinetic energy exponent" double gls_n([]), shape = [1] gls_n:long_name = "turbulent length scale exponent" double gls_cmu0([]), shape = [1] gls_cmu0:long_name = "stability coefficient" double gls_c1([]), shape = [1] gls_c1:long_name = "shear production coefficient" double gls_c2([]), shape = [1] gls_c2:long_name = "dissipation coefficient" double gls_c3m([]), shape = [1] gls_c3m:long_name = "buoyancy production coefficient (minus)" double gls_c3p([]), shape = [1] gls_c3p:long_name = "buoyancy production coefficient (plus)" double gls_sigk([]), shape = [1] gls_sigk:long_name = "constant Schmidt number for TKE" double gls_sigp([]), shape = [1] gls_sigp:long_name = "constant Schmidt number for PSI" double gls_Kmin([]), shape = [1] gls_Kmin:long_name = "minimum value of specific turbulent kinetic energy" double gls_Pmin([]), shape = [1] gls_Pmin:long_name = "minimum Value of dissipation" double Charnok_alpha([]), shape = [1] Charnok_alpha:long_name = "Charnok factor for surface roughness" double Zos_hsig_alpha([]), shape = [1] Zos_hsig_alpha:long_name = "wave amplitude factor for surface roughness" double sz_alpha([]), shape = [1] sz_alpha:long_name = "surface flux from wave dissipation" double CrgBan_cw([]), shape = [1] CrgBan_cw:long_name = "surface flux due to Craig and Banner wave breaking" double wec_alpha([]), shape = [1] wec_alpha:long_name = "coefficient for roller/breaking wave dissipation" double Znudg([]), shape = [1] Znudg:long_name = "free-surface nudging/relaxation inverse time scale" Znudg:units = "day-1" double M2nudg([]), shape = [1] M2nudg:long_name = "2D momentum nudging/relaxation inverse time scale" M2nudg:units = "day-1" double M3nudg([]), shape = [1] M3nudg:long_name = "3D momentum nudging/relaxation inverse time scale" M3nudg:units = "day-1" double Tnudg(tracer), shape = [2] Tnudg:long_name = "Tracers nudging/relaxation inverse time scale" Tnudg:units = "day-1" double rho0([]), shape = [1] rho0:long_name = "mean density used in Boussinesq approximation" rho0:units = "kilogram meter-3" double gamma2([]), shape = [1] gamma2:long_name = "slipperiness parameter" char spherical([]), shape = [1] spherical:long_name = "grid type logical switch" spherical:flag_values = "T, F" spherical:flag_meanings = "spherical Cartesian" double xl([]), shape = [1] xl:long_name = "domain length in the XI-direction" xl:units = "meter" double el([]), shape = [1] el:long_name = "domain length in the ETA-direction" el:units = "meter" int32 Vtransform([]), shape = [1] Vtransform:long_name = "vertical terrain-following transformation equation" int32 Vstretching([]), shape = [1] Vstretching:long_name = "vertical terrain-following stretching function" double theta_s([]), shape = [1] theta_s:long_name = "S-coordinate surface control parameter" double theta_b([]), shape = [1] theta_b:long_name = "S-coordinate bottom control parameter" double Tcline([]), shape = [1] Tcline:long_name = "S-coordinate surface/bottom layer width" Tcline:units = "meter" double hc([]), shape = [1] hc:long_name = "S-coordinate parameter, critical depth" hc:units = "meter" double s_rho(s_rho), shape = [21] s_rho:long_name = "S-coordinate at RHO-points" s_rho:valid_min = -1 s_rho:valid_max = 0 s_rho:positive = "up" s_rho:standard_name = "ocean_s_coordinate_g1" s_rho:formula_terms = "s: s_rho C: Cs_r eta: zeta depth: h depth_c: hc" s_rho:field = "s_rho, scalar" double s_w(s_w), shape = [22] s_w:long_name = "S-coordinate at W-points" s_w:valid_min = -1 s_w:valid_max = 0 s_w:positive = "up" s_w:standard_name = "ocean_s_coordinate_g1" s_w:formula_terms = "s: s_w C: Cs_w eta: zeta depth: h depth_c: hc" s_w:field = "s_w, scalar" double Cs_r(s_rho), shape = [21] Cs_r:long_name = "S-coordinate stretching curves at RHO-points" Cs_r:valid_min = -1 Cs_r:valid_max = 0 Cs_r:field = "Cs_r, scalar" double Cs_w(s_w), shape = [22] Cs_w:long_name = "S-coordinate stretching curves at W-points" Cs_w:valid_min = -1 Cs_w:valid_max = 0 Cs_w:field = "Cs_w, scalar" double h(eta_rho,xi_rho), shape = [149 199] h:long_name = "bathymetry at RHO-points" h:units = "meter" h:coordinates = "x_rho y_rho" h:field = "bath, scalar" double f(eta_rho,xi_rho), shape = [149 199] f:long_name = "Coriolis parameter at RHO-points" f:units = "second-1" f:coordinates = "x_rho y_rho" f:field = "coriolis, scalar" double pm(eta_rho,xi_rho), shape = [149 199] pm:long_name = "curvilinear coordinate metric in XI" pm:units = "meter-1" pm:coordinates = "x_rho y_rho" pm:field = "pm, scalar" double pn(eta_rho,xi_rho), shape = [149 199] pn:long_name = "curvilinear coordinate metric in ETA" pn:units = "meter-1" pn:coordinates = "x_rho y_rho" pn:field = "pn, scalar" double x_rho(eta_rho,xi_rho), shape = [149 199] x_rho:long_name = "x-locations of RHO-points" x_rho:units = "meter" x_rho:field = "x_rho, scalar" double y_rho(eta_rho,xi_rho), shape = [149 199] y_rho:long_name = "y-locations of RHO-points" y_rho:units = "meter" y_rho:field = "y_rho, scalar" double x_u(eta_u,xi_u), shape = [149 198] x_u:long_name = "x-locations of U-points" x_u:units = "meter" x_u:field = "x_u, scalar" double y_u(eta_u,xi_u), shape = [149 198] y_u:long_name = "y-locations of U-points" y_u:units = "meter" y_u:field = "y_u, scalar" double x_v(eta_v,xi_v), shape = [148 199] x_v:long_name = "x-locations of V-points" x_v:units = "meter" x_v:field = "x_v, scalar" double y_v(eta_v,xi_v), shape = [148 199] y_v:long_name = "y-locations of V-points" y_v:units = "meter" y_v:field = "y_v, scalar" double x_psi(eta_psi,xi_psi), shape = [148 198] x_psi:long_name = "x-locations of PSI-points" x_psi:units = "meter" x_psi:field = "x_psi, scalar" double y_psi(eta_psi,xi_psi), shape = [148 198] y_psi:long_name = "y-locations of PSI-points" y_psi:units = "meter" y_psi:field = "y_psi, scalar" double mask_rho(eta_rho,xi_rho), shape = [149 199] mask_rho:long_name = "mask on RHO-points" mask_rho:flag_values = 0 1 mask_rho:flag_meanings = "land water" mask_rho:coordinates = "x_rho y_rho" double mask_u(eta_u,xi_u), shape = [149 198] mask_u:long_name = "mask on U-points" mask_u:flag_values = 0 1 mask_u:flag_meanings = "land water" mask_u:coordinates = "x_u y_u" double mask_v(eta_v,xi_v), shape = [148 199] mask_v:long_name = "mask on V-points" mask_v:flag_values = 0 1 mask_v:flag_meanings = "land water" mask_v:coordinates = "x_v y_v" double mask_psi(eta_psi,xi_psi), shape = [148 198] mask_psi:long_name = "mask on psi-points" mask_psi:flag_values = 0 1 mask_psi:flag_meanings = "land water" mask_psi:coordinates = "x_psi y_psi" double ocean_time(ocean_time), shape = [9] ocean_time:long_name = "averaged time since initialization" ocean_time:units = "seconds since 0001-01-01 00:00:00" ocean_time:calendar = "julian" ocean_time:field = "time, scalar, series" single pvorticity_bar(ocean_time,eta_psi,xi_psi), shape = [9 148 198] pvorticity_bar:long_name = "2D potential vorticity" pvorticity_bar:units = "meter-1 second-1" pvorticity_bar:time = "ocean_time" pvorticity_bar:coordinates = "x_psi y_psi ocean_time" pvorticity_bar:field = "pvorticity_bar, scalar, series" pvorticity_bar:_FillValue = 9999999933815812500000000000000000000.000000 f single rvorticity_bar(ocean_time,eta_psi,xi_psi), shape = [9 148 198] rvorticity_bar:long_name = "2D relative vorticity" rvorticity_bar:units = "second-1" rvorticity_bar:time = "ocean_time" rvorticity_bar:coordinates = "x_psi y_psi ocean_time" rvorticity_bar:field = "rvorticity_bar, scalar, series" rvorticity_bar:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_cor(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_cor:long_name = "2D u-momentum, Coriolis term" ubar_cor:units = "meter second-2" ubar_cor:time = "ocean_time" ubar_cor:coordinates = "x_u y_u ocean_time" ubar_cor:field = "ubar_cor, scalar, series" ubar_cor:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_cor(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_cor:long_name = "2D v-momentum, Coriolis term" vbar_cor:units = "meter second-2" vbar_cor:time = "ocean_time" vbar_cor:coordinates = "x_v y_v ocean_time" vbar_cor:field = "vbar_cor, scalar, series" vbar_cor:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_hadv(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_hadv:long_name = "2D u-momentum, horizontal advection term" ubar_hadv:units = "meter second-2" ubar_hadv:time = "ocean_time" ubar_hadv:coordinates = "x_u y_u ocean_time" ubar_hadv:field = "ubar_hadv, scalar, series" ubar_hadv:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_hadv(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_hadv:long_name = "2D v-momentum, horizontal advection term" vbar_hadv:units = "meter second-2" vbar_hadv:time = "ocean_time" vbar_hadv:coordinates = "x_v y_v ocean_time" vbar_hadv:field = "vbar_hadv, scalar, series" vbar_hadv:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_xadv(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_xadv:long_name = "2D u-momentum, horizontal XI-advection term" ubar_xadv:units = "meter second-2" ubar_xadv:time = "ocean_time" ubar_xadv:coordinates = "x_u y_u ocean_time" ubar_xadv:field = "ubar_xadv, scalar, series" ubar_xadv:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_xadv(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_xadv:long_name = "2D v-momentum, horizontal XI-advection term" vbar_xadv:units = "meter second-2" vbar_xadv:time = "ocean_time" vbar_xadv:coordinates = "x_v y_v ocean_time" vbar_xadv:field = "vbar_xadv, scalar, series" vbar_xadv:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_yadv(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_yadv:long_name = "2D u-momentum, horizontal ETA-advection term" ubar_yadv:units = "meter second-2" ubar_yadv:time = "ocean_time" ubar_yadv:coordinates = "x_u y_u ocean_time" ubar_yadv:field = "ubar_yadv, scalar, series" ubar_yadv:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_yadv(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_yadv:long_name = "2D v-momentum, horizontal ETA-advection term" vbar_yadv:units = "meter second-2" vbar_yadv:time = "ocean_time" vbar_yadv:coordinates = "x_v y_v ocean_time" vbar_yadv:field = "vbar_yadv, scalar, series" vbar_yadv:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_fsco(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_fsco:long_name = "2D u-momentum, Coriolis-stokes term" ubar_fsco:units = "meter second-2" ubar_fsco:time = "ocean_time" ubar_fsco:coordinates = "x_u y_u ocean_time" ubar_fsco:field = "ubar_fsco, scalar, series" ubar_fsco:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_fsco(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_fsco:long_name = "2D v-momentum, Coriolis-stokes term" vbar_fsco:units = "meter second-2" vbar_fsco:time = "ocean_time" vbar_fsco:coordinates = "x_v y_v ocean_time" vbar_fsco:field = "vbar_fsco, scalar, series" vbar_fsco:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_hjvf(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_hjvf:long_name = "2D u-momentum, J vortex force term" ubar_hjvf:units = "meter second-2" ubar_hjvf:time = "ocean_time" ubar_hjvf:coordinates = "x_u y_u ocean_time" ubar_hjvf:field = "ubar_hjvf, scalar, series" ubar_hjvf:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_hjvf(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_hjvf:long_name = "2D v-momentum, J vortex force term" vbar_hjvf:units = "meter second-2" vbar_hjvf:time = "ocean_time" vbar_hjvf:coordinates = "x_v y_v ocean_time" vbar_hjvf:field = "vbar_hjvf, scalar, series" vbar_hjvf:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_kvrf(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_kvrf:long_name = "2D u-momentum, K vortex force term" ubar_kvrf:units = "meter second-2" ubar_kvrf:time = "ocean_time" ubar_kvrf:coordinates = "x_u y_u ocean_time" ubar_kvrf:field = "ubar_kvrf, scalar, series" ubar_kvrf:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_kvrf(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_kvrf:long_name = "2D v-momentum, K vortex force term" vbar_kvrf:units = "meter second-2" vbar_kvrf:time = "ocean_time" vbar_kvrf:coordinates = "x_v y_v ocean_time" vbar_kvrf:field = "vbar_kvrf, scalar, series" vbar_kvrf:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_wrol(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_wrol:long_name = "2D u-momentum, wave roller acceleration term" ubar_wrol:units = "meter second-2" ubar_wrol:time = "ocean_time" ubar_wrol:coordinates = "x_u y_u ocean_time" ubar_wrol:field = "ubar_wrol, scalar, series" ubar_wrol:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_wrol(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_wrol:long_name = "2D v-momentum, wave roller acceleration term" vbar_wrol:units = "meter second-2" vbar_wrol:time = "ocean_time" vbar_wrol:coordinates = "x_v y_v ocean_time" vbar_wrol:field = "vbar_wrol, scalar, series" vbar_wrol:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_wbrk(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_wbrk:long_name = "2D u-momentum, wave breaking term" ubar_wbrk:units = "meter second-2" ubar_wbrk:time = "ocean_time" ubar_wbrk:coordinates = "x_u y_u ocean_time" ubar_wbrk:field = "ubar_wbrk, scalar, series" ubar_wbrk:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_wbrk(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_wbrk:long_name = "2D v-momentum, wave breaking term" vbar_wbrk:units = "meter second-2" vbar_wbrk:time = "ocean_time" vbar_wbrk:coordinates = "x_v y_v ocean_time" vbar_wbrk:field = "vbar_wbrk, scalar, series" vbar_wbrk:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_hvisc(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_hvisc:long_name = "2D u-momentum, horizontal viscosity term" ubar_hvisc:units = "meter second-2" ubar_hvisc:time = "ocean_time" ubar_hvisc:coordinates = "x_u y_u ocean_time" ubar_hvisc:field = "ubar_hvisc, scalar, series" ubar_hvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_hvisc(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_hvisc:long_name = "2D v-momentum, horizontal viscosity term" vbar_hvisc:units = "meter second-2" vbar_hvisc:time = "ocean_time" vbar_hvisc:coordinates = "x_v y_v ocean_time" vbar_hvisc:field = "vbar_hvisc, scalar, series" vbar_hvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_xvisc(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_xvisc:long_name = "2D u-momentum, horizontal XI-viscosity term" ubar_xvisc:units = "meter second-2" ubar_xvisc:time = "ocean_time" ubar_xvisc:coordinates = "x_u y_u ocean_time" ubar_xvisc:field = "ubar_xvisc, scalar, series" ubar_xvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_xvisc(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_xvisc:long_name = "2D v-momentum, horizontal XI-viscosity term" vbar_xvisc:units = "meter second-2" vbar_xvisc:time = "ocean_time" vbar_xvisc:coordinates = "x_v y_v ocean_time" vbar_xvisc:field = "vbar_xvisc, scalar, series" vbar_xvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_yvisc(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_yvisc:long_name = "2D u-momentum, horizontal ETA-viscosity term" ubar_yvisc:units = "meter second-2" ubar_yvisc:time = "ocean_time" ubar_yvisc:coordinates = "x_u y_u ocean_time" ubar_yvisc:field = "ubar_yvisc, scalar, series" ubar_yvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_yvisc(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_yvisc:long_name = "2D v-momentum, horizontal ETA-viscosity term" vbar_yvisc:units = "meter second-2" vbar_yvisc:time = "ocean_time" vbar_yvisc:coordinates = "x_v y_v ocean_time" vbar_yvisc:field = "vbar_yvisc, scalar, series" vbar_yvisc:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_prsgrd(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_prsgrd:long_name = "2D u-momentum, pressure gradient term" ubar_prsgrd:units = "meter second-2" ubar_prsgrd:time = "ocean_time" ubar_prsgrd:coordinates = "x_u y_u ocean_time" ubar_prsgrd:field = "ubar_prsgrd, scalar, series" ubar_prsgrd:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_prsgrd(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_prsgrd:long_name = "2D v-momentum, pressure gradient term" vbar_prsgrd:units = "meter second-2" vbar_prsgrd:time = "ocean_time" vbar_prsgrd:coordinates = "x_v y_v ocean_time" vbar_prsgrd:field = "vbar_prsgrd, scalar, series" vbar_prsgrd:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_sstr(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_sstr:long_name = "2D u-momentum, surface stress term" ubar_sstr:units = "meter second-2" ubar_sstr:time = "ocean_time" ubar_sstr:coordinates = "x_u y_u ocean_time" ubar_sstr:field = "ubar_sstr, scalar, series" ubar_sstr:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_sstr(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_sstr:long_name = "2D v-momentum, surface stress term" vbar_sstr:units = "meter second-2" vbar_sstr:time = "ocean_time" vbar_sstr:coordinates = "x_v y_v ocean_time" vbar_sstr:field = "vbar_sstr, scalar, series" vbar_sstr:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_bstr(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_bstr:long_name = "2D u-momentum, bottom stress term" ubar_bstr:units = "meter second-2" ubar_bstr:time = "ocean_time" ubar_bstr:coordinates = "x_u y_u ocean_time" ubar_bstr:field = "ubar_bstr, scalar, series" ubar_bstr:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_bstr(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_bstr:long_name = "2D v-momentum, bottom stress term" vbar_bstr:units = "meter second-2" vbar_bstr:time = "ocean_time" vbar_bstr:coordinates = "x_v y_v ocean_time" vbar_bstr:field = "vbar_bstr, scalar, series" vbar_bstr:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_zeta(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_zeta:long_name = "2D u-momentum, Eulerian sea level adjustment" ubar_zeta:units = "meter second-2" ubar_zeta:time = "ocean_time" ubar_zeta:coordinates = "x_u y_u ocean_time" ubar_zeta:field = "ubar_zeta, scalar, series" ubar_zeta:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_zeta(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_zeta:long_name = "2D v-momentum, Eulerian sea level adjustment" vbar_zeta:units = "meter second-2" vbar_zeta:time = "ocean_time" vbar_zeta:coordinates = "x_v y_v ocean_time" vbar_zeta:field = "vbar_zeta, scalar, series" vbar_zeta:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_zetw(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_zetw:long_name = "2D u-momentum, quasi-static sea level adjustment" ubar_zetw:units = "meter second-2" ubar_zetw:time = "ocean_time" ubar_zetw:coordinates = "x_u y_u ocean_time" ubar_zetw:field = "ubar_zetw, scalar, series" ubar_zetw:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_zetw(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_zetw:long_name = "2D v-momentum, quasi-static sea level adjustment" vbar_zetw:units = "meter second-2" vbar_zetw:time = "ocean_time" vbar_zetw:coordinates = "x_v y_v ocean_time" vbar_zetw:field = "vbar_zetw, scalar, series" vbar_zetw:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_zqsp(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_zqsp:long_name = "2D u-momentum, quasi-static pressure" ubar_zqsp:units = "meter second-2" ubar_zqsp:time = "ocean_time" ubar_zqsp:coordinates = "x_u y_u ocean_time" ubar_zqsp:field = "ubar_zqsp, scalar, series" ubar_zqsp:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_zqsp(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_zqsp:long_name = "2D v-momentum, quasi-static pressure" vbar_zqsp:units = "meter second-2" vbar_zqsp:time = "ocean_time" vbar_zqsp:coordinates = "x_v y_v ocean_time" vbar_zqsp:field = "vbar_zqsp, scalar, series" vbar_zqsp:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_zbeh(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_zbeh:long_name = "2D u-momentum, Bernoulli head" ubar_zbeh:units = "meter second-2" ubar_zbeh:time = "ocean_time" ubar_zbeh:coordinates = "x_u y_u ocean_time" ubar_zbeh:field = "ubar_zbeh, scalar, series" ubar_zbeh:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_zbeh(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_zbeh:long_name = "2D v-momentum, Bernoulli head" vbar_zbeh:units = "meter second-2" vbar_zbeh:time = "ocean_time" vbar_zbeh:coordinates = "x_v y_v ocean_time" vbar_zbeh:field = "vbar_zbeh, scalar, series" vbar_zbeh:_FillValue = 9999999933815812500000000000000000000.000000 f single ubar_accel(ocean_time,eta_u,xi_u), shape = [9 149 198] ubar_accel:long_name = "2D u-momentum, acceleration term" ubar_accel:units = "meter second-2" ubar_accel:time = "ocean_time" ubar_accel:coordinates = "x_u y_u ocean_time" ubar_accel:field = "ubar_accel, scalar, series" ubar_accel:_FillValue = 9999999933815812500000000000000000000.000000 f single vbar_accel(ocean_time,eta_v,xi_v), shape = [9 148 199] vbar_accel:long_name = "2D v-momentum, acceleration term" vbar_accel:units = "meter second-2" vbar_accel:time = "ocean_time" vbar_accel:coordinates = "x_v y_v ocean_time" vbar_accel:field = "vbar_accel, scalar, series" vbar_accel:_FillValue = 9999999933815812500000000000000000000.000000 f