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A hypothesis for delayed dynamic earthquake triggering

January 1, 2005

It's uncertain whether more near-field earthquakes are triggered by static or dynamic stress changes. This ratio matters because static earthquake interactions are increasingly incorporated into probabilistic forecasts. Recent studies were unable to demonstrate all predictions from the static-stress-change hypothesis, particularly seismicity rate reductions. However, current dynamic stress change hypotheses do not explain delayed earthquake triggering and Omori's law. Here I show numerically that if seismic waves can alter some frictional contacts in neighboring fault zones, then dynamic triggering might cause delayed triggering and an Omori-law response. The hypothesis depends on faults following a rate/state friction law, and on seismic waves changing the mean critical slip distance (Dc) at nucleation zones.

Publication Year 2005
Title A hypothesis for delayed dynamic earthquake triggering
DOI 10.1029/2004GL021811
Authors T. Parsons
Publication Type Article
Publication Subtype Journal Article
Series Title Geophysical Research Letters
Index ID 70029116
Record Source USGS Publications Warehouse