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DORIS-based point mascons for the long term stability of precise orbit solutions
Authors:L Cerri  JM Lemoine  F Mercier  NP Zelensky  FG Lemoine
Institution:1. Centre Nationale d’Etudes Spatiales, Orbitography Office, Toulouse, France;2. Centre Nationale d’Etudes Spatiales, Groupe de Recherche de Géodésie Spatiale, Toulouse, France;3. SGT Inc., Greenbelt, MD, USA;4. NASA Goddard Space Flight Center, Greenbelt, MD, USA
Abstract:In recent years non-tidal Time Varying Gravity (TVG) has emerged as the most important contributor in the error budget of Precision Orbit Determination (POD) solutions for altimeter satellites’ orbits. The Gravity Recovery And Climate Experiment (GRACE) mission has provided POD analysts with static and time-varying gravity models that are very accurate over the 2002–2012 time interval, but whose linear rates cannot be safely extrapolated before and after the GRACE lifespan. One such model based on a combination of data from GRACE and Lageos from 2002–2010, is used in the dynamic POD solutions developed for the Geophysical Data Records (GDRs) of the Jason series of altimeter missions and the equivalent products from lower altitude missions such as Envisat, Cryosat-2, and HY-2A. In order to accommodate long-term time-variable gravity variations not included in the background geopotential model, we assess the feasibility of using DORIS data to observe local mass variations using point mascons. In particular, we show that the point-mascon approach can stabilize the geographically correlated orbit errors which are of fundamental interest for the analysis of regional Mean Sea Level trends based on altimeter data, and can therefore provide an interim solution in the event of GRACE data loss. The time series of point-mass solutions for Greenland and Antarctica show good agreement with independent series derived from GRACE data, indicating a mass loss at rate of 210 Gt/year and 110 Gt/year respectively.
Keywords:DORIS  POD  Altimetry  GRACE  Time Varying Gravity (TVG)  MASCON
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