4.7 Article

Gravity increase before the 2015 Mw 7.8 Nepal earthquake

期刊

GEOPHYSICAL RESEARCH LETTERS
卷 43, 期 1, 页码 111-117

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1002/2015GL066595

关键词

gravity change; Nepal M(w)7; 8 earthquake; Himalayan fault zone; India-Eurasian collision

资金

  1. National Natural Science Foundation of China [41104046, 91214201]
  2. National Science-technology Support Plan [2012BAK19B01-05]
  3. NSF/PIRE program [0730154]
  4. Office Of The Director
  5. Office Of Internatl Science &Engineering [0730154] Funding Source: National Science Foundation

向作者/读者索取更多资源

The 25 April 2015 Nepal earthquake (M-w 7.8) ruptured a segment of the Himalayan front fault zone. Four absolute gravimetric stations in southern Tibet, surveyed from 2010/2011 to 2013 and corrected for secular variations, recorded up to 22.401.11Gal/yr of gravity increase during this period. The gravity increase is distinct from the long-wavelength secular trends of gravity decrease over the Tibetan Plateau and may be related to interseismic mass change around the locked plate interface under the Himalayan-Tibetan Plateau. We modeled the source region as a disk of 580km in diameter, which is consistent with the notion that much of the southern Tibetan crust is involved in storing strain energy that drives the Himalayan earthquakes. If validated in other regions, high-precision ground measurements of absolute gravity may provide a useful method for monitoring mass changes in the source regions of potential large earthquakes.

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