Data Preparations for a New Australian Gravimetric Geoid

The rationale is given for a new determination of the Australian gravimetric geoid. In preparation for this task, the Australian Geological Survey Organisation's gravity data base has been validated and reformatted. Additional information in the form of digital terrain data are available from...

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Main Authors: Featherstone, Will, Kearsley, A., Gilliland, J.
Other Authors: ?
Format: Journal Article
Published: The Institution of Surveyors, Australia Inc. 1997
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/19495
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author Featherstone, Will
Kearsley, A.
Gilliland, J.
author2 ?
author_facet ?
Featherstone, Will
Kearsley, A.
Gilliland, J.
author_sort Featherstone, Will
building Curtin Institutional Repository
collection Online Access
description The rationale is given for a new determination of the Australian gravimetric geoid. In preparation for this task, the Australian Geological Survey Organisation's gravity data base has been validated and reformatted. Additional information in the form of digital terrain data are available from the Australian Surveying and Land Information Group's 9" by 9" Digital Elevation Model (DEM), derived from ~5.2 million spot elevations and the ~0.6 million elevations in the gravity data base. Both gravity and terrain data were transformed to give their horizontal position on the GRS80 ellipsoid, which produces a homogeneous data source for subsequent geoid computations. The gravity anomalies were computed using a second-order, free-air correction and normal gravity was computed using GRS80 latitude. Satellite altimeter-derived gravity anomalies are also considered as an additional source of information in offshore areas. The statistical fit of the new EGM96 global geopotential model to geometrical control provided by the Australian Fiducial and National GPS Networks is shown to be an improvement upon the OSU91A model, upon which AUSGEOID93 was based.
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spelling curtin-20.500.11937-194952017-01-30T12:14:08Z Data Preparations for a New Australian Gravimetric Geoid Featherstone, Will Kearsley, A. Gilliland, J. ? Australia. AHD GPS geoid The rationale is given for a new determination of the Australian gravimetric geoid. In preparation for this task, the Australian Geological Survey Organisation's gravity data base has been validated and reformatted. Additional information in the form of digital terrain data are available from the Australian Surveying and Land Information Group's 9" by 9" Digital Elevation Model (DEM), derived from ~5.2 million spot elevations and the ~0.6 million elevations in the gravity data base. Both gravity and terrain data were transformed to give their horizontal position on the GRS80 ellipsoid, which produces a homogeneous data source for subsequent geoid computations. The gravity anomalies were computed using a second-order, free-air correction and normal gravity was computed using GRS80 latitude. Satellite altimeter-derived gravity anomalies are also considered as an additional source of information in offshore areas. The statistical fit of the new EGM96 global geopotential model to geometrical control provided by the Australian Fiducial and National GPS Networks is shown to be an improvement upon the OSU91A model, upon which AUSGEOID93 was based. 1997 Journal Article http://hdl.handle.net/20.500.11937/19495 The Institution of Surveyors, Australia Inc. fulltext
spellingShingle Australia. AHD
GPS
geoid
Featherstone, Will
Kearsley, A.
Gilliland, J.
Data Preparations for a New Australian Gravimetric Geoid
title Data Preparations for a New Australian Gravimetric Geoid
title_full Data Preparations for a New Australian Gravimetric Geoid
title_fullStr Data Preparations for a New Australian Gravimetric Geoid
title_full_unstemmed Data Preparations for a New Australian Gravimetric Geoid
title_short Data Preparations for a New Australian Gravimetric Geoid
title_sort data preparations for a new australian gravimetric geoid
topic Australia. AHD
GPS
geoid
url http://hdl.handle.net/20.500.11937/19495