Please use this identifier to cite or link to this item: http://library.iigm.res.in:8080/xmlui/handle/123456789/682
Title: The Mw 8.6 Indian ocean earthquake on 11 April 2012: coseismic displacement, coulomb stress change and aftershocks pattern
Authors: Shrivastava, Mahesh N.
Reddy, C.D.
Keywords: Earthquake
Coulomb stress
Coseismic
Indian Ocean
Indian ocean earthquake
GPS
Issue Date: 2013
Citation: Journal of the Geological Society of India, v.81/6, p.813-820, 2013, doi: 10.1007/s12594-013-0106-7
Abstract: The Mw 8.6 Indian Ocean earthquake occurred on April 11, 2012 near the NW junction of three plates viz. Indian, Australian and Sunda plate, which caused widespread coseismic displacements and Coulomb stress changes. We analyzed the GPS data from three IGS sites PBRI, NTUS & COCO and computed the coseismic horizontal displacements. In order to have in-depth understanding of the physics of earthquake processes and probabilistic hazard, we estimated the coseismic displacements and associated Coulomb stress changes from two rectangular parallel fault geometries, constrained by Global Positioning System (GPS) derived coseismic displacements. The Coulomb stress changes following the earthquake found to be in the range of 5 to -4 bar with maximum displacement of ∼11 m near the epicenter. We find that most of the aftershocks occurred in the areas of increased Coulomb stress and concentrated in three clusters. The temporal variation of the aftershocks, not conformed to modified Omori's law, speculating poroelastic processes. It is also ascertained that the spatio-temporal transient stress changes may promote the occurrence of the subsequent earthquakes and enhance the seismic risk in the region.
URI: http://localhost:8080/xmlui/handle/123456789/682
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