Gravity fields of the southern ocean from Geosat Data
- 10 March 1992
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 97 (B3) , 3247-3260
- https://doi.org/10.1029/91jb02797
Abstract
In August 1990, the U.S. Navy declassified all Geodetic Mission (GM) radar altimeter data acquired by the Geosat satellite over oceanic regions south of 60°S. We have used these GM data in conjunction with the unclassified, lower‐resolution Geosat Exact Repeat Mission (ERM) altimeter data to construct high‐resolution gravity fields on a 5‐km grid covering the annular region of the southern ocean, which lies between 60°S and 72°S and encircles Antarctica. During the GM a complete mapping of the marine geoid (between 72° and 72°N) was accomplished. The GM produced more densely spaced ground tracks (typically 2 or 3 km at 60°S) than those of either the ERM or Seasat. Consequently, we were able to use the GM data to map the marine gravity field at a higher resolution than was previously possible using satellite altimeter data. This paper describes the techniques we used to derive these gravity fields and image them. These techniques involve (1) computing along‐track sea surface height slopes, (2) gridding of these ascending and descending slopes, (3) converting the slopes to conventional deflections of the vertical, (4) transforming the deflections to gravity anomalies in the frequency domain, and (5) imaging. The resulting images of the marine gravity field reveal much that is new about the seafloor and the tectonic fabric of the southern ocean: a region which includes large expanses of seafloor that have never been surveyed by ships.This publication has 20 references indexed in Scilit:
- Antarctic marine gravity field from high-density satellite altimetryGeophysical Journal International, 1992
- Geosat GM data reveal new details of ocean floorEos, 1991
- The GEM‐T2 Gravitational ModelJournal of Geophysical Research, 1990
- The use of FFT techniques in physical geodesyGeophysical Journal International, 1990
- Global mean sea surface based upon the Seasat altimeter dataJournal of Geophysical Research, 1986
- Evidence for small‐scale mantle convection from Seasat altimeter dataJournal of Geophysical Research, 1986
- A detailed view of the South Pacific geoid from satellite altimetryJournal of Geophysical Research, 1984
- Digital images of combined oceanic and continental data sets and their use in tectonic studiesEos, 1983
- Image processing applied to gravity and topography data covering the continental U.S.Eos, 1982
- Physical geodesyBulletin géodésique, 1967