The development and evaluation of the Earth Gravitational Model 2008 (EGM2008)
Autor: | Nikolaos K. Pavlis, Simon A. Holmes, Steve C. Kenyon, John K. Factor |
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Rok vydání: | 2012 |
Předmět: |
Atmospheric Science
Soil Science Aquatic Science Oceanography Gravity anomaly Physics::Geophysics Gravitation Gravitational potential Gravitational field Geochemistry and Petrology Geoid Earth and Planetary Sciences (miscellaneous) Geopotential model Earth-Surface Processes Water Science and Technology Physics Ecology European Combined Geodetic Network Paleontology Forestry Geophysics Geodesy EGM96 Space and Planetary Science Physics::Space Physics |
Zdroj: | Journal of Geophysical Research: Solid Earth. 117 |
ISSN: | 0148-0227 |
DOI: | 10.1029/2011jb008916 |
Popis: | [1] EGM2008 is a spherical harmonic model of the Earth's gravitational potential, developed by a least squares combination of the ITG-GRACE03S gravitational model and its associated error covariance matrix, with the gravitational information obtained from a global set of area-mean free-air gravity anomalies defined on a 5 arc-minute equiangular grid. This grid was formed by merging terrestrial, altimetry-derived, and airborne gravity data. Over areas where only lower resolution gravity data were available, their spectral content was supplemented with gravitational information implied by the topography. EGM2008 is complete to degree and order 2159, and contains additional coefficients up to degree 2190 and order 2159. Over areas covered with high quality gravity data, the discrepancies between EGM2008 geoid undulations and independent GPS/Leveling values are on the order of ±5 to ±10 cm. EGM2008 vertical deflections over USA and Australia are within ±1.1 to ±1.3 arc-seconds of independent astrogeodetic values. These results indicate that EGM2008 performs comparably with contemporary detailed regional geoid models. EGM2008 performs equally well with other GRACE-based gravitational models in orbit computations. Over EGM96, EGM2008 represents improvement by a factor of six in resolution, and by factors of three to six in accuracy, depending on gravitational quantity and geographic area. EGM2008 represents a milestone and a new paradigm in global gravity field modeling, by demonstrating for the first time ever, that given accurate and detailed gravimetric data, asingle global model may satisfy the requirements of a very wide range of applications. |
Databáze: | OpenAIRE |
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