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Modeling and Estimation of a Low Degree Geopotential Model from Terrestrial Gravity Data

Modeling and Estimation of a Low Degree Geopotential Model from Terrestrial Gravity Data


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About the Book

The development of appropriate modeling and adjustment procedures for the estimation of harmonic coefficients of the geopotential, from surface gravity data was studied, in order to provide an optimum way of utilizing the terrestrial gravity information in combination solutions currently developed at NASA/Goddard Space Flight Center, for use in the TOPEX/POSEIDON mission. The mathematical modeling was based on the fundamental boundary condition of the linearized Molodensky boundary value problem. Atmospheric and ellipsoidal corrections were applied to the surface anomalies. Terrestrial gravity solutions were found to be in good agreement with the satellite ones over areas which are well surveyed (gravimetrically), such as North America or Australia. However, systematic differences between the terrestrial only models and GEMT1, over extended regions in Africa, the Soviet Union, and China were found. In Africa, gravity anomaly differences on the order of 20 mgals and undulation differences on the order of 15 meters, over regions extending 2000 km in diameter, occur. Comparisons of the GEMT1 implied undulations with 32 well distributed Doppler derived undulations gave an RMS difference of 2.6 m, while corresponding comparison with undulations implied by the terrestrial solution gave RMS difference on the order of 15 m, which implies that the terrestrial data in that region are substantially in error. Pavlis, Nikolaos K. Unspecified Center BOUNDARY VALUE PROBLEMS; GEOPOTENTIAL; GRAVITY ANOMALIES; MATHEMATICAL MODELS; PREDICTION ANALYSIS TECHNIQUES; SPHERICAL HARMONICS; ATMOSPHERIC EFFECTS; BOUNDARY CONDITIONS; LEAST SQUARES METHOD; NUMERICAL ANALYSIS; TERRAIN; WEIGHTING FUNCTIONS...


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Product Details
  • ISBN-13: 9781723213786
  • Publisher: Createspace Independent Publishing Platform
  • Publisher Imprint: Createspace Independent Publishing Platform
  • Height: 279 mm
  • No of Pages: 188
  • Spine Width: 10 mm
  • Width: 216 mm
  • ISBN-10: 1723213780
  • Publisher Date: 18 Jul 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 449 gr


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