Hydrological Excitations of Polar Motion Derived from Different Variables of Fgoals − g 2 Climate Model
Pubblicato online: 23 dic 2016
Pagine: 107 - 122
Ricevuto: 12 gen 2016
Accettato: 25 ott 2016
DOI: https://doi.org/10.1515/arsa-2016-0010
Parole chiave
© 2016 Artificial Satellites
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
The hydrological contribution to decadal, inter-annual and multi-annual suppress polar motion derived from climate model as well as from GRACE (Gravity Recovery and Climate Experiment) data is discussed here for the period 2002.3-2016.0. The data set used here are Earth Orientation Parameters Combined 04 (EOP C04), Flexible Global Ocean-Atmosphere-Land System Model: Grid-point Version 2 (FGOAL-g2) and Global Land Data Assimilation System (GLDAS) climate models and GRACE CSR RL05 data for polar motion, hydrological and gravimetric excitation, respectively. Several Hydrological Angular Momentum (HAM) functions are calculated here from the selected variables: precipitation, evaporation, runoff, soil moisture, accumulated snow of the FGOALS and GLDAS climate models as well as from the global mass change fields from GRACE data provided by the International Earth Rotation and Reference System Service (IERS) Global Geophysical Fluids Center (GGFC).
The contribution of different HAM excitation functions to achieve the full agreement between geodetic observations and geophysical excitation functions of polar motion is studied here.