What Controls Variations in Aftershock Productivity?
Session: Crustal Stress and Strain and Implications for Fault Interaction and Slip
Type: Oral
Date: 4/28/2020
Time: 09:00 AM
Room: 240
Description:
The number of aftershocks increases with mainshock size following a well-defined scaling law. However, excursions from the average behavior are common. This variability is particularly concerning for large earthquakes where the number of aftershocks varies by factors of 100 for mainshocks of comparable magnitude. Do observable factors lead to differences in aftershock behavior? We examine aftershock productivity relative to the global average for all mainshocks (MW>6.5) from 1990 to 2019. A global map of earthquake productivity highlights the influence of tectonic regimes. Earthquake depth, lithosphere age and plate boundary type correspond well with earthquake productivity. We investigate the role of mainshock attributes by compiling source dimensions, radiated seismic energy, stress drop and a measure of slip heterogeneity based on finite fault source inversions for the largest earthquakes from 1990 to 2017. On an individual basis, stress drop, normalized rupture width and aspect ratio most strongly correlate with aftershock productivity. A multivariate analysis shows that a particular set of parameters (dip, lithospheric age and normalized rupture area) combines well to improve predictions of aftershock productivity on a cross-validated data set. Our overall analysis is consistent with a model in which the volumetric abundance of nearby stressed faults controls the aftershock productivity rather than variations in source stress. Thus, we suggest a complementary approach to aftershock forecasts based on geological and rupture properties rather than local calibration alone.
Presenting Author: Kelian Dascher-Cousineau
Authors
Kelian Dascher-Cousineau kdascher@ucsc.edu University of California, Santa Cruz, Santa Cruz, California, United States Presenting Author
Corresponding Author
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Emily E Brodsky brodsky@ucsc.edu University of California, Santa Cruz, Santa Cruz, California, United States |
Thorne Lay tlay@ucsc.edu University of California, Santa Cruz, Santa Cruz, California, United States |
Thomas H W Goebel thgoebel@memphis.edu University of Memphis, Memphis, Tennessee, United States |
What Controls Variations in Aftershock Productivity?
Category
Crustal Stress and Strain and Implications for Fault Interaction and Slip