Publications
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Only very strong shaking can break a tree Only very strong shaking can break a tree
A handful of credible accounts, both recent and historical, describe trees being broken during earthquakes. Apart from landslides and tsunamis, such accounts are uncommon, suggesting that trees break only when ground acceleration is extreme or when trees are especially vulnerable to breakage. Here, I consider the question: what ground acceleration is required to break a living tree? I...
Authors
Susan E. Hough
Compact seismicity bursts have different characteristics from regional seismicity Compact seismicity bursts have different characteristics from regional seismicity
Earthquakes tend to cluster, developing into sequences driven by stress perturbations and transient fault-zone processes. Depending on the driving process, earthquake sequences show differing behaviors. This variability challenges our ability to observe or distinguish these driving processes in high resolution. Here we systematically identify seismicity bursts throughout southern...
Authors
Nicolas DeSalvio, Wenyuan Fan, Andrew J. Barbour, Jeanne L. Hardebeck
Deaf, deafblind, and hard of hearing university student experiences with earthquake early warning in the United States: Evaluating language planning and technology access Deaf, deafblind, and hard of hearing university student experiences with earthquake early warning in the United States: Evaluating language planning and technology access
The growing literature on deaf and hard of hearing (DHH+) populations and disasters demonstrates that emergency communication (including alerts) is not reaching global DHH + individuals with dangerous impacts for morbidity and mortality. This is the first research study in the U.S. to qualitatively explore the experiences of DHH + persons with earthquake early warning (EEW) through group...
Authors
Audrey Cooper, Kota Takayama, Michele Cooke, Oronde Oliver Drakes, Danielle F. Sumy, Sara K. McBride
Constraining source and path effects of large magnitude earthquakes using ground motion simulations Constraining source and path effects of large magnitude earthquakes using ground motion simulations
The purpose of this study is to use ground‐motion simulations to investigate ways in which source and path effects for large‐magnitude earthquakes can be represented in nonergodic ground‐motion models (GMMs). To achieve this, we designed a ground‐motion study in the San Francisco Bay Area that includes earthquakes with a broad range of magnitudes distributed uniformly on a fault plane...
Authors
Xiaofeng Meng, Robert Graves, Christine A Goulet
Earthquake rupture arrest from depth‐dependent frictional stability on the Pütürge segment of the East Anatolian Fault Zone, Türkiye (Turkey) Earthquake rupture arrest from depth‐dependent frictional stability on the Pütürge segment of the East Anatolian Fault Zone, Türkiye (Turkey)
Determining why earthquake ruptures stop is a central challenge in earthquake science and seismic hazard assessment. The Pütürge segment of the East Anatolian Fault Zone, Türkiye, exhibits shallow creep ( 6.5 earthquake ruptures at greater depth. Here, we evaluate whether variations in frictional stability along this segment aided arrest of the 2020 M 6.7 Elaziğ and 2023 M 7.8 Pazarcık...
Authors
Johanna Nevitt, Tamara Nicole Jeppson, Roger Bilham, Diane E. Moore, David A. Lockner, William D Barnhart, Ziyadin Cakir, Efe Ayruk, Benjamin A. Brooks, Dawn Catherine Sweeney Ruth, Nima Ekhtari, Francisco Gomez, Jonathan Weiss, Sarah E. Minson, Semih Ergintav, Ugur Dogan, Seda Ozarpaci, Nadine G. Reitman, Ruth A. Harris
New constraints on northeast Seattle basin structure from converted seismic waves New constraints on northeast Seattle basin structure from converted seismic waves
The Seattle basin is a deep sedimentary basin in the Seattle–Bellevue, Washington metropolitan area within the Puget Lowland of Washington State. We determine the structure of a portion of the basin and the underlying basement using analysis of P waves converted from direct S incident from below. A deep local crustal event beneath Monroe, about 35 km northeast of Seattle, was recorded by...
Authors
Frederick Pollitz, Ian P. Stone, Audrey M. Dunham, Erin A. Wirth
Stress states on the eve of past earthquakes inform earthquake rupture through fault complexity along the San Andreas and San Jacinto faults Stress states on the eve of past earthquakes inform earthquake rupture through fault complexity along the San Andreas and San Jacinto faults
Estimating the evolving state of stress along active fault systems can provide insight into the conditions that generated past ground‐rupturing earthquakes and influenced their ability to propagate through areas of geometric complexity, such as fault branches and stepovers. We use quasi‐static forward numerical models that incorporate the 3D complex configuration of active faults in...
Authors
Emery Anderson-Merritt, Michelle Cooke, Katherine M. Scharer
Orientation dependence of probabilistic seismic hazard estimates from CyberShake physics-based simulations Orientation dependence of probabilistic seismic hazard estimates from CyberShake physics-based simulations
Earthquake ground‐motion intensities, such as pseudospectral accelerations (SAs), can vary significantly with horizontal orientation. However, conducting probabilistic seismic hazard analysis (PSHA) for each horizontal orientation is challenging because current ground‐motion models used in PSHA consider only a single horizontal intensity value, usually the median across all orientations...
Authors
Alan John Poulos, Evan Tyler Hirakawa, Grace Alexandra Parker, Annemarie S. Baltay
Characterizing precariously balanced rocks (PBRs) in the eastern United States for estimating maximum past earthquake ground motions Characterizing precariously balanced rocks (PBRs) in the eastern United States for estimating maximum past earthquake ground motions
Fragile geologic features (FGFs) can be used to estimate an upper bound to the strength of earthquake ground shaking in the past thousands to tens of thousands of years. FGFs could be especially useful in the eastern United States, where few active faults are available for paleoseismic studies and where low seismic attenuation means that an earthquake could damage FGFs at large distances...
Authors
Thomas L. Pratt, Mark Stirling, Devin McPhillips, Paula Figueiredo
Subaerially exposed Iceberg Lake sediments: An exceptional record of historical subaqueous earthquake disturbance at the eastern edge of the Alaskan-Aleutian subduction zone Subaerially exposed Iceberg Lake sediments: An exceptional record of historical subaqueous earthquake disturbance at the eastern edge of the Alaskan-Aleutian subduction zone
Paleoseismic records are limited in the Yakutat Terrane (eastern edge of the Alaskan-Aleutian subduction zone) due to the extensive ice cover that hinders traditional methods such as trenching of the faults, but lacustrine sediments offer an alternative archive. We investigated lakebed sediments exposed after recent outburst floods (1999 CE) at Iceberg Lake, a glacier-dammed basin whose
Authors
Maarten Van Daele, Pieterjan Vercruysse, Robert C. Witter, Michael Loso, Drake Moore Singleton, Sabine Schmidt, Kamill Lisson, Peter J. Haeussler, Robert L. Wesson
Deformed submarine terraces in Puget Sound, Pacific Northwest, indicate only one M >~7.5 earthquake on the Seattle fault zone in the past 11,000 yr Deformed submarine terraces in Puget Sound, Pacific Northwest, indicate only one M >~7.5 earthquake on the Seattle fault zone in the past 11,000 yr
Submerged marine terraces in Puget Sound, deformed across the Seattle fault zone (SFZ), indicate that only one earthquake as large as M~7.5 has occurred in at least the past 11 kyr. Previous paleoseismic studies document a M~7.5 earthquake between 923–4 CE, which uplifted coastal marine terraces by as much as 8 m. We demonstrate that this earthquake was the only such event since ~11 ka...
Authors
Elizabeth J. Davis, Juliet G. Crider, Ralph A. Haugerud, Emily Roland, Ginevra Moore
Final Report for SCEC Award #25347 - A dynamic rupture workshop to improve our understanding of fault friction Final Report for SCEC Award #25347 - A dynamic rupture workshop to improve our understanding of fault friction
No abstract available.
Authors
Ruth A. Harris, Michael Barall