netcdf frc_respiration { dimensions: xi_rho = 100 ; xi_u = 99 ; xi_v = 100 ; eta_rho = 150 ; eta_u = 150 ; eta_v = 149 ; s_rho = 20 ; s_w = 21 ; respiration_time = UNLIMITED ; // (0 currently) variables: int spherical ; spherical:long_name = "grid type logical switch" ; spherical:flag_values = "0, 1" ; spherical:flag_meanings = "Cartesian spherical" ; int Vtransform ; Vtransform:long_name = "vertical terrain-following transformation equation" ; int Vstretching ; Vstretching:long_name = "vertical terrain-following stretching function" ; double theta_s ; theta_s:long_name = "S-coordinate surface control parameter" ; double theta_b ; theta_b:long_name = "S-coordinate bottom control parameter" ; double Tcline ; Tcline:long_name = "S-coordinate surface/bottom layer width" ; Tcline:units = "meter" ; double hc ; hc:long_name = "S-coordinate parameter, critical depth" ; hc:units = "meter" ; double s_rho(s_rho) ; 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" ; double s_w(s_w) ; 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" ; double Cs_r(s_rho) ; Cs_r:long_name = "S-coordinate stretching curves at RHO-points" ; Cs_r:valid_min = -1. ; Cs_r:valid_max = 0. ; double Cs_w(s_w) ; Cs_w:long_name = "S-coordinate stretching curves at W-points" ; Cs_w:valid_min = -1. ; Cs_w:valid_max = 0. ; double h(eta_rho, xi_rho) ; h:long_name = "bathymetry at RHO-points" ; h:units = "meter" ; h:coordinates = "lon_rho lat_rho" ; double lon_rho(eta_rho, xi_rho) ; lon_rho:long_name = "longitude of RHO-points" ; lon_rho:units = "degree_east" ; lon_rho:standard_name = "longitude" ; double lat_rho(eta_rho, xi_rho) ; lat_rho:long_name = "latitude of RHO-points" ; lat_rho:units = "degree_north" ; lat_rho:standard_name = "latitude" ; double respiration_time(respiration_time) ; respiration_time:long_name = "respiration date time" ; respiration_time:units = "days since 2001-01-01 00:00:00" ; double respiration(respiration_time, s_rho, eta_rho, xi_rho) ; respiration:long_name = "respiration rate" ; respiration:units = "millimole_oxygen meter-3 day-1" ; respiration:time = "respiration_time" ; // global attributes: :type = "ROMS FORCING file" ; :title = "Total Respiration Rate for Hypoxia" ; }