Direct measurement of sub-surface mass change using the variable-baseline gravity gradient method
Time-lapse gravity data provide a direct, non-destructive method to monitor mass changes at scales from cm to km. But, the effectively infinite spatial sensitivity of gravity measurements can make it difficult to isolate the signal of interest. The variable-baseline gravity gradient method, based on the difference of measurements between two gravimeters, is an alternative to the conventional approach of individually modeling all sources of mass and elevation change. This approach can improve the signal-to-noise ratio for many applications by removing the contributions of Earth tides, loading, and other signals that have the same effect on both gravimeters. At the same time, this approach can focus the support volume within a relatively small user-defined region of the subsurface. The method is demonstrated using paired superconducting gravimeters to make for the first time a large-scale, non-invasive measurement of infiltration wetting front velocity and change in water content above the wetting front.
Citation Information
Publication Year | 2014 |
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Title | Direct measurement of sub-surface mass change using the variable-baseline gravity gradient method |
DOI | 10.1002/2014GL059673 |
Authors | Jeffrey Kennedy, Ty P.A. Ferré, Andreas Güntner, Maiko Abe, Benjamin Creutzfeldt |
Publication Type | Article |
Publication Subtype | Journal Article |
Series Title | Geophysical Research Letters |
Index ID | 70101780 |
Record Source | USGS Publications Warehouse |
USGS Organization | Arizona Water Science Center |