Publications
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The 11 April 2012 east Indian Ocean earthquake triggered large aftershocks worldwide The 11 April 2012 east Indian Ocean earthquake triggered large aftershocks worldwide
Large earthquakes trigger very small earthquakes globally during passage of the seismic waves and during the following several hours to days1, 2, 3, 4, 5, 6, 7, 8, 9, 10, but so far remote aftershocks of moment magnitude M≥5.5 have not been identified11, with the lone exception of an M=6.9 quake remotely triggered by the surface waves from an M=6.6 quake 4,800 kilometres away12. The 2012...
Authors
Fred F. Pollitz, Ross S. Stein, Volkan Sevilgen, Roland Burgmann
Fault healing promotes high-frequency earthquakes in laboratory experiments and on natural faults Fault healing promotes high-frequency earthquakes in laboratory experiments and on natural faults
Faults strengthen or heal with time in stationary contact and this healing may be an essential ingredient for the generation of earthquakes. In the laboratory, healing is thought to be the result of thermally activated mechanisms that weld together micrometre-sized asperity contacts on the fault surface, but the relationship between laboratory measures of fault healing and the...
Authors
Gregory C. McLaskey, Amanda M. Thomas, Steven D. Glaser, Robert M. Nadeau
Rapid acceleration leads to rapid weakening in earthquake-like laboratory experiments Rapid acceleration leads to rapid weakening in earthquake-like laboratory experiments
After nucleation, a large earthquake propagates as an expanding rupture front along a fault. This front activates countless fault patches that slip by consuming energy stored in Earth’s crust. We simulated the slip of a fault patch by rapidly loading an experimental fault with energy stored in a spinning flywheel. The spontaneous evolution of strength, acceleration, and velocity...
Authors
Jefferson C. Chang, David A. Lockner, Z. Reches
Directivity models produced for the Next Generation Attenuation West 2 (NGA-West 2) project Directivity models produced for the Next Generation Attenuation West 2 (NGA-West 2) project
Five new directivity models are being developed for the NGA-West 2 project. All are based on the NGA-West 2 data base, which is considerably expanded from the original NGA-West data base, containing about 3,000 more records from earthquakes having finite-fault rupture models. All of the new directivity models have parameters based on fault dimension in km, not normalized fault dimension...
Authors
Paul A. Spudich, Jennie Watson-Lamprey, Paul G. Somerville, Jeff Bayless, Shrey Shahi, Jack W. Baker, Badie Rowshandel, Brian Chiou
Design and implementation of a structural health monitoring and alerting system for hospital buildings in the United States Design and implementation of a structural health monitoring and alerting system for hospital buildings in the United States
This paper describes the current progress in the development of a structural health monitoring and alerting system to meet the needs of the U.S. Department of Veterans Affairs to monitor hospital buildings instrumented in high and very high seismic hazard regions in the U.S. The system, using the measured vibration data, is primarily designed for post-earthquake condition assessment of...
Authors
Hasan S. Ulusoy, Erol Kalkan, Jon Peter B. Fletcher, Paul A. Friberg, W. K. Leith, Krishna Banga
Estimating rate uncertainty with maximum likelihood: differences between power-law and flicker–random-walk models Estimating rate uncertainty with maximum likelihood: differences between power-law and flicker–random-walk models
Recent studies have documented that global positioning system (GPS) time series of position estimates have temporal correlations which have been modeled as a combination of power-law and white noise processes. When estimating quantities such as a constant rate from GPS time series data, the estimated uncertainties on these quantities are more realistic when using a noise model that...
Authors
John O. Langbein
Designs and test results for three new rotational sensors Designs and test results for three new rotational sensors
We discuss the designs and testing of three rotational seismometer prototypes developed at the Institute of Geophysics, Academy of Sciences (Prague, Czech Republic). Two of these designs consist of a liquid-filled toroidal tube with the liquid as the proof mass and providing damping; we tested the piezoelectric and pressure transduction versions of this torus. The third design is a wheel...
Authors
P. Jedlicka, J.T. Kozak, J.R. Evans, C. R. Hutt
Helping safeguard Veterans Affairs' hospital buildings by advanced earthquake monitoring Helping safeguard Veterans Affairs' hospital buildings by advanced earthquake monitoring
In collaboration with the U.S. Department of Veterans Affairs (VA), the National Strong Motion Project of the U.S. Geological Survey has recently installed sophisticated seismic systems that will monitor the structural integrity of hospital buildings during earthquake shaking. The new systems have been installed at more than 20 VA medical campuses across the country. These monitoring...
Authors
Erol Kalkan, Krishna Banga, Hasan S. Ulusoy, Jon Peter B. Fletcher, William S. Leith, James L. Blair
Turbidite event history—Methods and implications for Holocene paleoseismicity of the Cascadia subduction zone Turbidite event history—Methods and implications for Holocene paleoseismicity of the Cascadia subduction zone
Turbidite systems along the continental margin of Cascadia Basin from Vancouver Island, Canada, to Cape Mendocino, California, United States, have been investigated with swath bathymetry; newly collected and archive piston, gravity, kasten, and box cores; and accelerator mass spectrometry radiocarbon dates. The purpose of this study is to test the applicability of the Holocene turbidite...
Authors
Chris Goldfinger, C. Hans Nelson, Ann E. Morey, Joel E. Johnson, Jason R. Patton, Eugene B. Karabanov, Julia Gutierrez-Pastor, Andrew T. Eriksson, Eulalia Gracia, Gita Dunhill, Randolph J. Enkin, Audrey Dallimore, Tracy Vallier
Initial assessment of the intensity distribution of the 2011 Mw5.8 Mineral, Virginia, earthquake Initial assessment of the intensity distribution of the 2011 Mw5.8 Mineral, Virginia, earthquake
The intensity data collected by the U.S. Geological Survey (USGS) "Did You Feel It?" (DYFI) Website (USGS, DYFI; http://earthquake.usgs.gov/earthquakes/dyfi/events/se/082311a/us/index.html, last accessed Sept 2011) for the Mw5.8 Mineral, Virginia, earthquake, are unprecedented in their spatial richness and geographical extent. More than 133,000 responses were received during the first...
Authors
Susan E. Hough
Source parameters of microearthquakes on an interplate asperity off Kamaishi, NE Japan over two earthquake cycles Source parameters of microearthquakes on an interplate asperity off Kamaishi, NE Japan over two earthquake cycles
We have estimated the source parameters of interplate earthquakes in an earthquake cluster off Kamaishi, NE Japan over two cycles of M~ 4.9 repeating earthquakes. The M~ 4.9 earthquake sequence is composed of nine events that occurred since 1957 which have a strong periodicity (5.5 ± 0.7 yr) and constant size (M4.9 ± 0.2), probably due to stable sliding around the source area (asperity)...
Authors
Naoki Uchida, Toru Matsuzawa, William L. Ellsworth, Kazutoshi Imanishi, Kouhei Shimamura, Akira Hasegawa
Probabilistic estimates of surface coseismic slip and afterslip for Hayward fault earthquakes Probabilistic estimates of surface coseismic slip and afterslip for Hayward fault earthquakes
We examine the partition of long‐term geologic slip on the Hayward fault into interseismic creep, coseismic slip, and afterslip. Using Monte Carlo simulations, we compute expected coseismic slip and afterslip at three alinement array sites for Hayward fault earthquakes with nominal moment magnitudes ranging from about 6.5 to 7.1. We consider how interseismic creep might affect the...
Authors
Brad T. Aagaard, James J. Lienkaemper, David P. Schwartz