Code: Select all
[cloud@igplogin Sarika]$ ncdump -c merged_coawst_bdy.nc
netcdf merged_coawst_bdy {
dimensions:
xpsi = 299 ;
xrho = 300 ;
xu = 299 ;
xv = 300 ;
epsi = 219 ;
erho = 220 ;
eu = 220 ;
ev = 219 ;
s_rho = 16 ;
zeta_time = 2 ;
v2d_time = 2 ;
v3d_time = 2 ;
salt_time = 2 ;
temp_time = 2 ;
variables:
double zeta_time(zeta_time) ;
zeta_time:long_name = "zeta_time" ;
zeta_time:units = "days" ;
zeta_time:field = "zeta_time, scalar, series" ;
double v2d_time(v2d_time) ;
v2d_time:long_name = "v2d_time" ;
v2d_time:units = "days" ;
v2d_time:field = "v2d_time, scalar, series" ;
double v3d_time(v3d_time) ;
v3d_time:long_name = "v3d_time" ;
v3d_time:units = "days" ;
v3d_time:field = "v3d_time, scalar, series" ;
double salt_time(salt_time) ;
salt_time:long_name = "salt_time" ;
salt_time:units = "days" ;
salt_time:field = "salt_time, scalar, series" ;
double temp_time(temp_time) ;
temp_time:long_name = "temp_time" ;
temp_time:units = "days" ;
temp_time:field = "temp_time, scalar, series" ;
double zeta_south(zeta_time, xrho) ;
zeta_south:long_name = "free-surface southern boundary condition" ;
zeta_south:units = "meter" ;
zeta_south:field = "zeta_south, scalar, series" ;
double zeta_east(zeta_time, erho) ;
zeta_east:long_name = "free-surface eastern boundary condition" ;
zeta_east:units = "meter" ;
zeta_east:field = "zeta_east, scalar, series" ;
double zeta_west(zeta_time, erho) ;
zeta_west:long_name = "free-surface western boundary condition" ;
zeta_west:units = "meter" ;
zeta_west:field = "zeta_west, scalar, series" ;
double zeta_north(zeta_time, xrho) ;
zeta_north:long_name = "free-surface northern boundary condition" ;
zeta_north:units = "meter" ;
zeta_north:field = "zeta_north, scalar, series" ;
float ubar_south(v2d_time, xu) ;
ubar_south:long_name = "2D u-momentum southern boundary condition" ;
ubar_south:units = "meter second-1" ;
ubar_south:field = "ubar_south, scalar, series" ;
float ubar_east(v2d_time, eu) ;
ubar_east:long_name = "2D u-momentum eastern boundary condition" ;
ubar_east:units = "meter second-1" ;
ubar_east:field = "ubar_east, scalar, series" ;
float ubar_west(v2d_time, eu) ;
ubar_west:long_name = "2D u-momentum western boundary condition" ;
ubar_west:units = "meter second-1" ;
ubar_west:field = "ubar_west, scalar, series" ;
float ubar_north(v2d_time, xu) ;
ubar_north:long_name = "2D u-momentum northern boundary condition" ;
ubar_north:units = "meter second-1" ;
ubar_north:field = "ubar_north, scalar, series" ;
float vbar_south(v2d_time, xv) ;
vbar_south:long_name = "2D v-momentum southern boundary condition" ;
vbar_south:units = "meter second-1" ;
vbar_south:field = "vbar_south, scalar, series" ;
float vbar_east(v2d_time, ev) ;
vbar_east:long_name = "2D v-momentum eastern boundary condition" ;
vbar_east:units = "meter second-1" ;
vbar_east:field = "vbar_east, scalar, series" ;
float vbar_west(v2d_time, ev) ;
vbar_west:long_name = "2D v-momentum western boundary condition" ;
vbar_west:units = "meter second-1" ;
vbar_west:field = "vbar_west, scalar, series" ;
float vbar_north(v2d_time, xv) ;
vbar_north:long_name = "2D v-momentum northern boundary condition" ;
vbar_north:units = "meter second-1" ;
vbar_north:field = "vbar_north, scalar, series" ;
float u_south(v3d_time, s_rho, xu) ;
u_south:long_name = "3D u-momentum southern boundary condition" ;
u_south:units = "meter second-1" ;
u_south:field = "u_south, scalar, series" ;
float u_east(v3d_time, s_rho, eu) ;
u_east:long_name = "3D u-momentum eastern boundary condition" ;
u_east:units = "meter second-1" ;
u_east:field = "u_east, scalar, series" ;
float u_west(v3d_time, s_rho, eu) ;
u_west:long_name = "3D u-momentum western boundary condition" ;
u_west:units = "meter second-1" ;
u_west:field = "u_west, scalar, series" ;
float u_north(v3d_time, s_rho, xu) ;
u_north:long_name = "3D u-momentum northern boundary condition" ;
u_north:units = "meter second-1" ;
u_north:field = "u_north, scalar, series" ;
float v_south(v3d_time, s_rho, xv) ;
v_south:long_name = "3D v-momentum southern boundary condition" ;
v_south:units = "meter second-1" ;
v_south:field = "v_south, scalar, series" ;
float v_east(v3d_time, s_rho, ev) ;
v_east:long_name = "3D v-momentum eastern boundary condition" ;
v_east:units = "meter second-1" ;
v_east:field = "v_east, scalar, series" ;
float v_west(v3d_time, s_rho, ev) ;
v_west:long_name = "3D v-momentum western boundary condition" ;
v_west:units = "meter second-1" ;
v_west:field = "v_west, scalar, series" ;
float v_north(v3d_time, s_rho, xv) ;
v_north:long_name = "3D v-momentum northern boundary condition" ;
v_north:units = "meter second-1" ;
v_north:field = "v_north, scalar, series" ;
float temp_south(temp_time, s_rho, xrho) ;
temp_south:long_name = "3D temperature southern boundary condition" ;
temp_south:units = "C" ;
temp_south:field = "temp_south, scalar, series" ;
float temp_east(temp_time, s_rho, erho) ;
temp_east:long_name = "3D temperature eastern boundary condition" ;
temp_east:units = "C" ;
temp_east:field = "temp_east, scalar, series" ;
float temp_west(temp_time, s_rho, erho) ;
temp_west:long_name = "3D temperature western boundary condition" ;
temp_west:units = "C" ;
temp_west:field = "temp_west, scalar, series" ;
float temp_north(temp_time, s_rho, xrho) ;
temp_north:long_name = "3D temperature northern boundary condition" ;
temp_north:units = "C" ;
temp_north:field = "temp_north, scalar, series" ;
float salt_south(salt_time, s_rho, xrho) ;
salt_south:long_name = "3D salinity southern boundary condition" ;
salt_south:units = "psu" ;
salt_south:field = "salt_south, scalar, series" ;
float salt_east(salt_time, s_rho, erho) ;
salt_east:long_name = "3D salinity eastern boundary condition" ;
salt_east:units = "psu" ;
salt_east:field = "salt_east, scalar, series" ;
float salt_west(salt_time, s_rho, erho) ;
salt_west:long_name = "3D salinity western boundary condition" ;
salt_west:units = "psu" ;
salt_west:field = "salt_west, scalar, series" ;
float salt_north(salt_time, s_rho, xrho) ;
salt_north:long_name = "3D salinity northern boundary condition" ;
salt_north:units = "psu" ;
salt_north:field = "salt_north, scalar, series" ;
// global attributes:
:history = "Created by updatclim on 16-Dec-2020 23:39:24" ;
:type = "climate forcing file from http://hycom.coaps.fsu.edu:8080/thredds/dodsC/glb_analysis" ;
data:
zeta_time = 4983379200, 4983465600 ;
v2d_time = 4983379200, 4983465600 ;
v3d_time = 4983379200, 4983465600 ;
salt_time = 4983379200, 4983465600 ;
temp_time = 4983379200, 4983465600 ;
I want to forecast during 48h of lead time begin at 20161016, why is my set-up going wrong?
Can you help me to address this issue.
Thank you.