HR: 13:55h
AN: OS33C-02 [Abstracts]
TI: A high-resolution global ocean model of ROMS and its application to GRACE
AU: * Colberg, F
EM: fcolberg@pacific.jpl.nasa.gov
AF: JPL/ CalTech, 4800 Oak Grove Dr., Pasadena, CA 91109, United States
AU: Song, T Y
EM: song@pacific.jpl.nasa.gov
AF: JPL/ CalTech, 4800 Oak Grove Dr., Pasadena, CA 91109, United States
AB:
We report on a high-resolution global ocean modeling effort using the regional ocean modeling system (ROMS-
Ruttgers version). This study is motivated by the availability of increasingly accurate measurements of the earth
gravitational field (e. g. GRACE), which allow for the deduction of ocean bottom pressure and hence an estimation
of the total oceanic mass flux. Since ocean models using Boussinesq approximation a priori inhibit the
calculation of ocean bottom pressure signals our effort is directed towards developing a global ocean model with
non-Boussinesq formulation.
At the current developing stage we are able to present preliminary results from the initial spin-up phase of the
hydrostatic model version. The model resolution is on average 1/4 degree horizontally, with highest
resolution over the equatorial belt decreasing towards the subtropics to midlatitudes. To overcome the north-pole
singularity the grid has been rotated following Madec and Imbard (1996). The ocean model is then coupled to a
Sea-Ice model at the poles, hence allowing for a more realistic representation of fresh water fluxes there and for
the investigation of possible Ocean-Ice interaction. The model is spun-up with monthly climatologies of the
NCEP/ NCAR Reanalysis and then run with monthly means of NCEP/ NCAR windstress and fluxes from 1948 to
present.
DE: 4215 Climate and interannual variability (1616, 1635, 3305, 3309, 4513)
DE: 4255 Numerical modeling (0545, 0560)
DE: 4513 Decadal ocean variability (1616, 1635, 3305, 4215)
SC: Ocean Sciences [OS]
MN: 2007 Fall Meeting