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Limited dynamic triggering in the Utah region, USA

Research output: Contribution to journalArticlepeer-review

Abstract

The state of Utah, USA, experiences around 3800 catalogued earthquakes per year, highlighting that the region is seismically active and susceptible to earthquakes. Following the 2002 Denali Fault (M7.9) earthquake in Alaska, the region showed an elevated seismicity rate for 3 weeks following the passage of high amplitude surface waves, suggesting that the region may be particularly susceptible to dynamic triggering. With over 23 396 faults and each fault presenting a potential fault for triggering, we systematically search for dynamic triggering throughout the state of Utah caused by large, global earthquakes with M ≥ 7. Specifically, we analyse earthquake catalogues and all available waveform data to determine statistical increases of seismicity rate following the passage of seismic arrivals. While we find instances of dynamic triggering, our results show that these events occur sparsely in the region. In total, less than 20 per cent of the 273 main shocks that occur from 2000 to the end of 2017 show a statistical indication of dynamic triggering throughout the Utah region, highlighting that dynamic triggering is limited for stresses created by transient signals from global M ≥ 7 earthquakes, with the exception being the Denali Fault (M7.9), Alaska earthquake (i.e. an instance of significant triggering).

Original languageEnglish
Pages (from-to)1517-1530
Number of pages14
JournalGeophysical Journal International
Volume229
Issue number3
DOIs
StatePublished - Jun 1 2022

Funding

This work was supported by the University of Texas at El Paso's Department of Earth, Environmental and Resource Sciences via Department Research Incentive Program is funded by the University of Texas at El Paso. David Guenaga is supported by the OUSD/R&E (Office Of The Under Secretary of Defense- Research and Engineering) [https://www.cto.mil/]; National Defense Education Program (NDEP)/BA-1 [https://www.grants.gov/w eb/grants/view-opportunity.html?oppId=334905]; Basic Research [https://basicresearch.defense.gov/About/]; Science, Mathematics, and Research for Transformation (SMART) [https://www.smartsch olarship.org/smart?id=about smart] Scholarship.

Keywords

  • Earthquake dynamics
  • Earthquake interaction, forecasting, and prediction
  • Statistical seismology

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