HR: 10:50h
AN: G32A-03 INVITED [Abstracts]
TI: Contributions of Numerical Simulations of Atmosphere-Hydrosphere Dynamics to the Interpretation of Geodetic Observations
AU: * Thomas, M
EM: mthomas@gfz-potsdam.de
AF: GeoForschungsZentrum, Telegrafenberg A17
Dept. 1: Geodesy and Remote Sensing, Potsdam, 14473, Germany
AU: Dobslaw, H
EM: dobslaw@gfz-potsdam.de
AF: GeoForschungsZentrum, Telegrafenberg A17
Dept. 1: Geodesy and Remote Sensing, Potsdam, 14473, Germany
AB:
Mass redistributions within and mass exchanges among the Earth's subsystems are reflected in the
fundamental observables of geodesy, i.e., the Earth's shape, its rotation and gravity field. Since all these
parameters of the Earth are precisely observed with various space- and ground-based geodetic techniques, in
principle, underlying dynamical processes in the Earth system are monitored. However, due to the integral
character of geodetic observations and restrictions concerning resolution in time and space, the processing as
well as the interpretation and utilization of the data require independent, interdisciplinary, and consistent
methods, e.g., from theory and modelling. Here, a numerical model approach covering transient dynamics and
corresponding mass redistributions in the atmosphere-hydrosphere system is presented. This modular system
model allows for the connection of fundamentally different measurements as, e.g., atmospheric and hydrospheric
mass anomalies, load induced vertical deformations, sea-surface height variations as well as changes in Earth
rotation, and therefore provides the opportunity to jointly interpret different types of geodetic and geophysical
observations.
Exemplarily, ocean mass anomalies from GRACE satellite gravimetry and sea surface height anomalies from
Jason 1 satellite altimetry will be connected by means of output of the global ocean model OMCT consistently
forced by operational analyses from ECMWF and freshwater fluxes simulated with a hydrological discharge
model. Beside the discussion of individual short-comings of both observation techniques as well as of the
applied ocean model, it will be demonstrated how reliable information about climate relevant oceanic heat
transports can be derived from the global monitoring data.
DE: 1218 Mass balance (0762, 1223, 1631, 1836, 1843, 3010, 3322, 4532)
DE: 1223 Ocean/Earth/atmosphere/hydrosphere/cryosphere interactions (0762, 1218, 3319, 4550)
DE: 1295 Integrations of techniques
DE: 1622 Earth system modeling (1225)
SC: Geodesy [G]
MN: 2007 Fall Meeting