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Title: 3-D Simulations of earthquakes rupture jumps: 1. Homogeneous pre-stress conditions

Journal Article · · Geophysical Journal International

SUMMARY Observational and modelling studies indicate that earthquake ruptures can jump between fault sections as large as ∼3 and ∼5 km for compressional and extensional offsets, respectively. Here, we compare characteristics of the rupture jump process on parallel but offset fault sections from traditional 3-D dynamic rupture simulations governed by slip weakening friction using the finite element code, FaultMod, to those from quasi-dynamic simulations governed by rate- and state-dependent friction (rate-state friction) using the code RSQSim. These simulations use spatially uniform initial stresses. For a variety of measures the rupture renucleation position on the offset fault, the rate-state friction and slip weakening friction models produce very similar results. The principal difference is the additional occurrence of delayed rupture jumps that arise from the time- and stress-dependent nucleation that is characteristic of rate-state friction. For immediate rupture jumps, models with slip weakening friction span greater offsets than those with rate-state friction. However the jump distances are nearly identical when delayed rupture jumps are included in the comparisons. We propose that delayed rupture jumps are the likely mechanism for adjacent large-earthquake pairs and clusters. Based on the similarity of renucleation positions with both dynamic and quasi-dynamic models, we conclude that the renucleation positions for rupture initiation on the receiver fault (separated by less than ∼3 km from the source fault) are primarily controlled by static stress changes induced by slip on the initiating fault. However, in light of the slightly greater maximum jump distances (>3 km) seen with the dynamic slip weakening friction model, dynamic stress changes from seismic waves play an increasingly important role as offset distances increase.

Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
OSTI ID:
1960642
Journal Information:
Geophysical Journal International, Journal Name: Geophysical Journal International Journal Issue: 1 Vol. 234; ISSN 0956-540X
Publisher:
Oxford University PressCopyright Statement
Country of Publication:
United Kingdom
Language:
English

References (27)

Quasi-dynamic versus fully dynamic simulations of earthquakes and aseismic slip with and without enhanced coseismic weakening journal March 2014
Dynamically modeling fault step overs using various friction laws: Modeling Stepovers with Various Friction journal July 2014
Modeling the Effects of a Normal-Stress-Dependent State Variable, Within the Rate- and State-Dependent Friction Framework, at Stepovers and Dip-Slip Faults journal January 2017
Earthquake nucleation on faults with rate-and state-dependent strength journal September 1992
The surge of great earthquakes from 2004 to 2014 journal January 2015
Static-stress impact of the 1992 Landers earthquake sequence on nucleation and slip at the site of the 1999 M=7.1 Hector Mine earthquake, southern California journal July 2000
Complex characteristics of slow slip events in subduction zones reproduced in multi‐cycle simulations journal October 2012
Effects of variable normal stress on rock friction: Observations and constitutive equations journal January 1992
Dynamics of fault interaction: parallel strike-slip faults journal March 1993
A constitutive law for rate of earthquake production and its application to earthquake clustering journal February 1994
Cohesive force across the tip of a longitudinal-shear crack and Griffith's specific surface energy journal July 1972
Modeling of rock friction: 1. Experimental results and constitutive equations journal January 1979
Slip instability and state variable friction laws journal December 1983
Dynamic rupture modeling with laboratory-derived constitutive relations journal January 1989
Predicting the endpoints of earthquake ruptures journal November 2006
Rupture propagation beyond fault discontinuities: significance of fault strike and location journal November 2001
A grid-doubling finite-element technique for calculating dynamic three-dimensional spontaneous rupture on an earthquake fault journal August 2009
Comparison of characteristic and Gutenberg-Richter models for time-dependent M ≥ 7.9 earthquake probability in the Nankai-Tokai subduction zone, Japan: Earthquake forecasts in the Tokai area journal July 2012
The 2002 Denali Fault Earthquake, Alaska: A Large Magnitude, Slip-Partitioned Event journal May 2003
Assembly of a large earthquake from a complex fault system: Surface rupture kinematics of the 4 April 2010 El Mayor–Cucapah (Mexico) Mw 7.2 earthquake journal August 2014
The Enigma of the new Madrid Earthquakes of 1811–1812 journal May 1996
Rupture Termination and Jump on Parallel Offset Faults journal February 2008
The Effects of Double Fault Bends on Rupture Propagation: A Geometrical Parameter Study journal January 2011
Uniform California Earthquake Rupture Forecast, Version 3 (UCERF3)--The Time-Independent Model journal June 2014
Rupture and Ground‐Motion Models on the Northern San Jacinto Fault, Incorporating Realistic Complexity journal July 2015
RSQSim Earthquake Simulator journal November 2012
The Mw7.8 2016 Kaikōura earthquake journal June 2017