Publications
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U.S. States and Territories National Tsunami Hazard Assessment: Historical record and sources for waves – Update U.S. States and Territories National Tsunami Hazard Assessment: Historical record and sources for waves – Update
The first U.S. Tsunami Hazard Assessment (Dunbar and Weaver, 2008) was prepared at the request of the National Tsunami Hazard Mitigation Program (NTHMP). The NTHMP is a partnership formed between federal and state agencies to reduce the impact of tsunamis through hazard assessment, warning guidance, and mitigation. The assessment was conducted in response to a 2005 joint report by the...
Authors
Paula K. Dunbar, Craig S. Weaver
Geologic setting of the proposed Fallon FORGE Site, Nevada: Suitability for EGS research and development Geologic setting of the proposed Fallon FORGE Site, Nevada: Suitability for EGS research and development
The proposed Fallon FORGE site lies within and adjacent to the Naval Air Station Fallon (NASF) directly southeast of the town of Fallon, Nevada, within the large basin of the Carson Sink in west-central Nevada. The site is located on two parcels that include land owned by the NASF and leased and owned by Ormat Nevada, Inc. The Carson Sink in the vicinity of the Fallon site is covered by...
Authors
James E. Faulds, Douglas Blankenship, Nicholas H. Hinz, Andrew Sabin, Josh Nordquist, Stephen H. Hickman, Jonathan M.G. Glen, Mack Kennedy, Drew Siler, Ann Robinson-Tait, Colin F. Williams, Peter Drakos, Wendy M. Calvin
Modifications to risk-targeted seismic design maps for subduction and near-fault hazards Modifications to risk-targeted seismic design maps for subduction and near-fault hazards
ASCE 7-10 introduced new seismic design maps that define risk-targeted ground motions such that buildings designed according to these maps will have 1% chance of collapse in 50 years. These maps were developed by iterative risk calculation, wherein a generic building collapse fragility curve is convolved with the U.S. Geological Survey hazard curve until target risk criteria are met...
Authors
Abbie B. Liel, Nico Luco, Meera Raghunandan, C. Champion
Analysis and selection of magnitude relations for the Working Group on Utah Earthquake Probabilities Analysis and selection of magnitude relations for the Working Group on Utah Earthquake Probabilities
Prior to calculating time-independent and -dependent earthquake probabilities for faults in the Wasatch Front region, the Working Group on Utah Earthquake Probabilities (WGUEP) updated a seismic-source model for the region (Wong and others, 2014) and evaluated 19 historical regressions on earthquake magnitude (M). These regressions relate M to fault parameters for historical surface...
Authors
Christopher B. DuRoss, Susan Olig, David Schwartz
Kinematics of shallow backthrusts in the Seattle fault zone, Washington State Kinematics of shallow backthrusts in the Seattle fault zone, Washington State
Near-surface thrust fault splays and antithetic backthrusts at the tips of major thrust fault systems can distribute slip across multiple shallow fault strands, complicating earthquake hazard analyses based on studies of surface faulting. The shallow expression of the fault strands forming the Seattle fault zone of Washington State shows the structural relationships and interactions...
Authors
Thomas L. Pratt, K.G. Troost, Jackson K. Odum, William J. Stephenson
The use of wavenumber normalization in computing spatially averaged coherencies (KRSPAC) of microtremor data from asymmetric arrays The use of wavenumber normalization in computing spatially averaged coherencies (KRSPAC) of microtremor data from asymmetric arrays
The SPAC method of processing microtremor noise observations for estimation of Vs profiles has a limitation that the array has circular or triangular symmetry in order to allow spatial (azimuthal) averaging of inter-station coherencies over a constant station separation. Common processing methods allow for station separations to vary by typically ±10% in the azimuthal averaging before...
Authors
M.W. Asten, William J. Stephenson, Stephen H. Hartzell
High‐resolution trench photomosaics from image‐based modeling: Workflow and error analysis High‐resolution trench photomosaics from image‐based modeling: Workflow and error analysis
Photomosaics are commonly used to construct maps of paleoseismic trench exposures, but the conventional process of manually using image‐editing software is time consuming and produces undesirable artifacts and distortions. Herein, we document and evaluate the application of image‐based modeling (IBM) for creating photomosaics and 3D models of paleoseismic trench exposures, illustrated...
Authors
Nadine G. Reitman, Scott E.K. Bennett, Ryan D. Gold, Richard W. Briggs, Christopher B. DuRoss
Numerical modeling of injection, stress and permeability enhancement during shear stimulation at the Desert Peak Enhanced Geothermal System Numerical modeling of injection, stress and permeability enhancement during shear stimulation at the Desert Peak Enhanced Geothermal System
Creation of an Enhanced Geothermal System relies on stimulation of fracture permeability through self-propping shear failure that creates a complex fracture network with high surface area for efficient heat transfer. In 2010, shear stimulation was carried out in well 27-15 at Desert Peak geothermal field, Nevada, by injecting cold water at pressure less than the minimum principal stress...
Authors
David Dempsey, Sharad Kelkar, Nick Davatzes, Stephen H. Hickman, Daniel Moos
Slip-pulse rupture behavior on a 2 meter granite fault Slip-pulse rupture behavior on a 2 meter granite fault
We describe observations of dynamic rupture events that spontaneously arise on meter-scale laboratory earthquake experiments. While low-frequency slip of the granite sample occurs in a relatively uniform and crack-like manner, instruments capable of detecting high frequency motions show that some parts of the fault slip abruptly (velocity >100 mm∙s-1, acceleration >20 km∙s-2) while the...
Authors
Gregory C. McLaskey, Brian D. Kilgore, Nicholas M. Beeler
Spatial-temporal variation of low-frequency earthquake bursts near Parkfield, California Spatial-temporal variation of low-frequency earthquake bursts near Parkfield, California
Tectonic tremor (TT) and low-frequency earthquakes (LFEs) have been found in the deeper crust of various tectonic environments globally in the last decade. The spatial-temporal behaviour of LFEs provides insight into deep fault zone processes. In this study, we examine recurrence times from a 12-yr catalogue of 88 LFE families with ∼730 000 LFEs in the vicinity of the Parkfield section...
Authors
Chunquan Wu, Robert Guyer, David R. Shelly, D. Trugman, William Frank, Joan S. Gomberg, P. Johnson
Micro-seismicity and seismic moment release within the Coso Geothermal Field, California Micro-seismicity and seismic moment release within the Coso Geothermal Field, California
We relocate 16 years of seismicity in the Coso Geothermal Field (CGF) using differential travel times and simultaneously invert for seismic velocities to improve our knowledge of the subsurface geologic and hydrologic structure. We expand on our previous results by doubling the number of relocated events from April 1996 through May 2012 using a new field-wide 3-D velocity model...
Authors
J. Ole Kaven, Stephen H. Hickman, Nicholas C. Davatzes
A large mantle water source for the northern San Andreas Fault System: A ghost of subduction past A large mantle water source for the northern San Andreas Fault System: A ghost of subduction past
Recent research indicates that the shallow mantle of the Cascadia subduction margin under near-coastal Pacific Northwest U.S. is cold and partially serpentinized, storing large quantities of water in this wedge-shaped region. Such a wedge probably formed to the south in California during an earlier period of subduction. We show by numerical modeling that after subduction ceased with the...
Authors
Stephen H. Kirby, Kelin Wang, Thomas M. Brocher