HR: 0800h
AN: OS31A-1439 [Abstracts]
TI: Parameter Optimization of a Box and a Three-Dimensional Ocean Carbon Cycle Model Using the Adjoint
Method: What Can We Learn?
AU: * Tjiputra, J
EM: jftjiputra@wisc.edu
AF: University of Wisconsin, 1225 W. Dayton St., Madison, WI 53706
United States
AU: Winguth, A
EM: amwinguth@wisc.edu
AF: University of Wisconsin, 1225 W. Dayton St., Madison, WI 53706
United States
AB:
A data assimilation technique is used to optimize marine ecosystem parameters that constraining carbon fluxes in a
three-dimensional ocean carbon cycle model. An identical twin experiment is able to produce an a posteriori parameter set
with significantly reduced model-data misfit. Error analysis using the Hessian matrix is applied to provide detailed
information on the sensitivity of different parameters. Parameters associated with zooplankton grazing and phytoplankton
growth reveal to be most sensitive with respect to surface chlorophyll concentration. In order to analyze the sensitivity of
these parameters in more detail, biweekly BATS data are compared with a box model as well as with three-dimensional model.
Interestingly, when different ocean regions are assimilated separately based on different physical and biogeochemical
conditions, regional variation of ecosystem parameters significantly reduces the model-data misfit. Our results also show
that certain regions need to have improved ecosystem model formulations in order to reduce the model data-misfit further.
DE: 3260 Inverse theory
DE: 4260 Ocean data assimilation and reanalysis (3225)
DE: 4805 Biogeochemical cycles, processes, and modeling (0412, 0414, 0793, 1615, 4912)
DE: 4806 Carbon cycling (0428)
DE: 4815 Ecosystems, structure, dynamics, and modeling (0439)
SC: Ocean Sciences [OS]
MN: Fall Meeting 2005