BOOK-CHAPTER

Intermittent Criticality and the Gutenberg-Richter Distribution

Abstract

In recent years there has been renewed interest in observations of accelerating moment release before large earthquakes, as well as theoretical descriptions of seismicity in terms of statistical physics. Most aspects of these works are encompassed by a concept called intermittent criticality in which a region alternately approaches and retreats from a critical -point. From this perspective, the evolution of seismicity in a region is described in terms of the growth and destruction of correlation in the stress field over the course of the seismic cycle. In this paper we test the concept of intermittent criticality by investigating the temporal evolution of the Gutenberg-Richter distribution before and after two successiveM ≥5.0 earthquakes in western Washington State. The largest event in this distribution, M maxis observed to systematically increase before each event, producing accelerating moment release, and then to subsequently decrease. Associated variations in the b-value are minimal This is the predicted result if M max is a measure of the correlation length of the regional stress field.

Keywords:
Induced seismicity Criticality Geology Seismology Self-organized criticality Event (particle physics) Moment (physics) Field (mathematics) Stress field Physics Mathematics Nuclear physics

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Citation History

Topics

earthquake and tectonic studies
Physical Sciences →  Earth and Planetary Sciences →  Geophysics
Earthquake Detection and Analysis
Physical Sciences →  Earth and Planetary Sciences →  Geophysics
High-pressure geophysics and materials
Physical Sciences →  Earth and Planetary Sciences →  Geophysics

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