4.8 Article

Long aftershock sequences within continents and implications for earthquake hazard assessment

Journal

NATURE
Volume 462, Issue 7269, Pages 87-89

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nature08502

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Funding

  1. NSF/OISE [0730154]
  2. Chinese Academy of Sciences
  3. Office Of The Director
  4. Office Of Internatl Science &Engineering [0730154] Funding Source: National Science Foundation

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One of the most powerful features of plate tectonics is that the known plate motions give insight into both the locations and average recurrence interval of future large earthquakes on plate boundaries. Plate tectonics gives no insight, however, into where and when earthquakes will occur within plates, because the interiors of ideal plates should not deform. As a result, within plate interiors, assessments of earthquake hazards rely heavily on the assumption that the locations of small earthquakes shown by the short historical record reflect continuing deformation that will cause future large earthquakes(1). Here, however, we show that many of these recent earthquakes are probably aftershocks of large earthquakes that occurred hundreds of years ago. We present a simple model predicting that the length of aftershock sequences varies inversely with the rate at which faults are loaded. Aftershock sequences within the slowly deforming continents are predicted to be significantly longer than the decade typically observed at rapidly loaded plate boundaries. These predictions are in accord with observations. So the common practice of treating continental earthquakes as steady-state seismicity overestimates the hazard in presently active areas and underestimates it elsewhere.

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