Publications
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Shallow microearthquakes near Chongqing, China triggered by the Rayleigh waves of the 2015 M7.8 Gorkha, Nepal earthquake Shallow microearthquakes near Chongqing, China triggered by the Rayleigh waves of the 2015 M7.8 Gorkha, Nepal earthquake
We present a case of remotely triggered seismicity in Southwest China by the 2015/04/25 M7.8 Gorkha, Nepal earthquake. A local magnitude ML3.8 event occurred near the Qijiang district south of Chongqing city approximately 12 min after the Gorkha mainshock. Within 30km of this ML3.8 event there are 62 earthquakes since 2009 and only 7 ML>3events, which corresponds to a likelihood of 0.3%...
Authors
Libo Han, Zhigang Peng, Christopher W. Johnson, Frederick Pollitz, Lu Li, Baoshan Wang, Jing Wu, Qiang Li, Hongmei Wei
Shear-wave velocity model from Rayleigh wave group velocities centered on the Sacramento/San Joaquin Delta Shear-wave velocity model from Rayleigh wave group velocities centered on the Sacramento/San Joaquin Delta
Rayleigh wave group velocities obtained from ambient noise tomography are inverted for an upper crustal model of the Central Valley, California, centered on the Sacramento/San Joaquin Delta. Two methods were tried; the first uses SURF96, a least-squares routine. It provides a good fit to the data, but convergence is dependent on the starting model. The second uses a genetic algorithm...
Authors
Jon Peter B. Fletcher, Jemile Erdem
Strong SH-to-Love wave scattering off the Southern California Continental Borderland Strong SH-to-Love wave scattering off the Southern California Continental Borderland
Seismic scattering is commonly observed and results from wave propagation in heterogeneous medium. Yet, deterministic characterization of scatterers associated with lateral heterogeneities remains challenging. In this study, we analyze broadband waveforms recorded by the Southern California Seismic Network and observe strongly scattered Love waves following the arrival of teleseismic SH...
Authors
Chunquan Yu, Zhongwen Zhan, Egill Hauksson, Elizabeth S. Cochran
Accounting for orphaned aftershocks in the earthquake background rate Accounting for orphaned aftershocks in the earthquake background rate
Aftershocks often occur within cascades of triggered seismicity in which each generation of aftershocks triggers an additional generation, and so on. The rate of earthquakes in any particular generation follows Omori's law, going approximately as 1/t. This function decays rapidly, but is heavy-tailed, and aftershock sequences may persist for long times at a rate that is difficult to...
Authors
Nicholas van der Elst
Physical properties of sidewall cores from Decatur, Illinois Physical properties of sidewall cores from Decatur, Illinois
To better assess the reservoir conditions influencing the induced seismicity hazard near a carbon dioxide sequestration demonstration site in Decatur, Ill., core samples from three deep drill holes were tested to determine a suite of physical properties including bulk density, porosity, permeability, Young’s modulus, Poisson’s ratio, and failure strength. Representative samples of the...
Authors
Carolyn A. Morrow, J. Ole Kaven, Diane E. Moore, David A. Lockner
Proceedings of the 11th United States-Japan natural resources panel for earthquake research, Napa Valley, California, November 16–18, 2016 Proceedings of the 11th United States-Japan natural resources panel for earthquake research, Napa Valley, California, November 16–18, 2016
The UJNR Panel on Earthquake Research promotes advanced research toward a more fundamental understanding of the earthquake process and hazard estimation. The Eleventh Joint meeting was extremely beneficial in furthering cooperation and deepening understanding of problems common to both Japan and the United States. The meeting included productive exchanges of information on approaches to...
FinDer v.2: Improved real-time ground-motion predictions for M2-M9 with seismic finite-source characterization FinDer v.2: Improved real-time ground-motion predictions for M2-M9 with seismic finite-source characterization
Recent studies suggest that small and large earthquakes nucleate similarly, and that they often have indistinguishable seismic waveform onsets. The characterization of earthquakes in real time, such as for earthquake early warning, therefore requires a flexible modeling approach that allows a small earthquake to become large as fault rupture evolves over time. Here, we present a modeling...
Authors
Maren Boese, Deborah Smith, Claude Felizardo, Men-Andrin Meier, Thomas H. Heaton, J.F. Clinton
Influence of pore pressure change on coseismic volumetric strain Influence of pore pressure change on coseismic volumetric strain
Coseismic strain is fundamentally important for understanding crustal response to changes of stress after earthquakes. The elastic dislocation model has been widely applied to interpreting observed shear deformation caused by earthquakes. The application of the same theory to interpreting volumetric strain, however, has met with difficulty, especially in the far field of earthquakes...
Authors
Chi-Yuen Wang, Andrew J. Barbour
Source spectral properties of small-to-moderate earthquakes in southern Kansas Source spectral properties of small-to-moderate earthquakes in southern Kansas
The source spectral properties of injection-induced earthquakes give insight into their nucleation, rupture processes, and influence on ground motion. Here we apply a spectral decomposition approach to analyze P-wave spectra and estimate Brune-type stress drop for more than 2000 ML1.5–5.2 earthquakes occurring in southern Kansas from 2014 to 2016. We find that these earthquakes are...
Authors
Daniel T. Trugman, Sara L. Dougherty, Elizabeth S. Cochran, Peter M. Shearer
Influence of the megathrust earthquake cycle on upper-plate deformation in the Cascadia forearc of Washington State, USA Influence of the megathrust earthquake cycle on upper-plate deformation in the Cascadia forearc of Washington State, USA
The influence of subduction zone earthquake cycle processes on permanent forearc deformation is poorly understood. In the Cascadia subduction zone forearc of Washington State, USA, deformed and incised fluvial terraces serve as archives of longer-term (103–104 yr) strain manifest as both fluvial incision and slip on upper-plate faults. We focus on comparing these geomorphic records in...
Authors
Jaime E. Delano, Colin B. Amos, John P. Loveless, Tammy M. Rittenour, Brian Sherrod, Lynch M. Emerson
Wastewater disposal and the earthquake sequences during 2016 near Fairview, Pawnee, and Cushing, Oklahoma Wastewater disposal and the earthquake sequences during 2016 near Fairview, Pawnee, and Cushing, Oklahoma
Each of the three earthquake sequences in Oklahoma in 2016—Fairview, Pawnee, and Cushing—appears to have been induced by high-volume wastewater disposal within 10 km. The Fairview M5.1 main shock was part of a 2 year sequence of more than 150 events of M3, or greater; the main shock accounted for about half of the total moment. The foreshocks and aftershocks of the M5.8 Pawnee earthquake...
Authors
Arthur F. McGarr, Andrew J. Barbour
Evaluating spatial and temporal relationships between an earthquake cluster near Entiat, central Washington, and the large December 1872 Entiat earthquake Evaluating spatial and temporal relationships between an earthquake cluster near Entiat, central Washington, and the large December 1872 Entiat earthquake
We investigate spatial and temporal relations between an ongoing and prolific seismicity cluster in central Washington, near Entiat, and the 14 December 1872 Entiat earthquake, the largest historic crustal earthquake in Washington. A fault scarp produced by the 1872 earthquake lies within the Entiat cluster; the locations and areas of both the cluster and the estimated 1872 rupture...
Authors
Thomas M. Brocher, Richard J. Blakely, Brian Sherrod