Three-dimensional glacial flow and surface elevation measured with radar interferometry
Johan J. Mohr,
Niels Reeh and
Søren N. Madsen ()
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Johan J. Mohr: Danish Center for Remote Sensing, Technical University of Denmark
Niels Reeh: Danish Center for Remote Sensing, Technical University of Denmark
Søren N. Madsen: Danish Center for Remote Sensing, Technical University of Denmark
Nature, 1998, vol. 391, issue 6664, 273-276
Abstract:
Abstract Outlet glaciers—which serve to drain ice from ice sheets—seem to be dynamically less stable in North Greenland than in South Greenland1,2,3. Storstrømmen, a large outlet glacier in northeastern Greenland which surged between 1978 and 1984 (ref. 2), has been well studied. In general, neither glacier surge mechanisms nor the geographical distribution of the surges are well known. Conventional satellite radar interferometry can provide large-scale topography models with high resolution4, and can measure the radar line-of-sight component of ice-flow vectors5, but cannot map full vector flow fields. Here we present an interferometry method that combines observations from descending and ascending satellite orbits which, assuming ice flow parallel to the topographic surface, allows us to use the differing view angles to estimate full three-dimensional surface flow patterns. The accuracy of our technique is confirmed by the good agreement between our radar-based flow model and in situ Global Positioning System (GPS) reference data at Storstrømmen. Radar measurements such as these, made regularly and at high spatial density, have the potential to substantially enhance our understanding of glacier dynamics and ice-sheet flow, as well as improve the accuracy of glacier mass-balance estimates.
Date: 1998
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Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:391:y:1998:i:6664:d:10.1038_34635
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DOI: 10.1038/34635
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