Publications
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Development of the next generation of seismic design value maps for the 2020 NEHRP Provisions Development of the next generation of seismic design value maps for the 2020 NEHRP Provisions
During the period January 2015 through August 2018, a joint committee of U.S. Geological Survey (USGS) representatives and National Institute of Building Sciences Building Seismic Safety Council (BSSC) volunteers and staff formed a committee to conduct Project 17. The purpose of Project 17 was to formulate recommendations for the rules by which next-generation seismic design value maps...
Authors
Ronald Hamburger, David Bonneville, C.B. Crouse, James D. Dolan, Ben Enfield, Julie Furr, Robert Hanson, James A. Harris, John Heintz, William Holmes, Jon Hooper, Charles Kircher, Nico Luco, Steven McCabe, Robert Pekelnicky, Jon Siu, Sanaz Rezaeian, Philipp Schneider, Jonathan P. Stewart, Siamak Sattar, Mai Tong, Jiqiu Yuan
Estimating rupture distances without a rupture Estimating rupture distances without a rupture
Most ground motion prediction equations (GMPEs) require distances that are defined relative to a rupture model, such as the distance to the surface projection of the rupture (RJB) or the closest distance to the rupture plane (RRUP). There are a number of situations in which GMPEs are used where it is either necessary or advantageous to derive rupture distances from point-source distance...
Authors
Eric M. Thompson, Charles Worden
Geoelectric monitoring at the Boulder magnetic observatory Geoelectric monitoring at the Boulder magnetic observatory
Despite its importance to a range of applied and fundamental studies, and obvious parallels to a robust network of magnetic-field observatories, long-term geoelectric field monitoring is rarely performed. The installation of a new geoelectric monitoring system at the Boulder magnetic observatory of the US Geological Survey is summarized. Data from the system are expected, among other...
Authors
Cletus Blum, Tim White, Edward A. Sauter, Duff Stewart, Paul A. Bedrosian, Jeffrey J. Love
Disturbance hydrology: Preparing for an increasingly disturbed future Disturbance hydrology: Preparing for an increasingly disturbed future
This special issue is the result of several fruitful conference sessions on disturbance hydrology, which started at the 2013 AGU Fall Meeting in San Francisco and have continued every year since. The stimulating presentations and discussions surrounding those sessions have focused on understanding both the disruption of hydrologic functioning following discrete disturbances, as well as...
Authors
Benjamin B. Mirus, Brian A. Ebel, Christian H. Mohr, Nicolas Zegre
Subduction zone slip variability during the last millennium, south-central Chile Subduction zone slip variability during the last millennium, south-central Chile
The Arauco Peninsula (37°-38°S) in south-central Chile has been proposed as a possible barrier to the along-strike propagation of megathrust ruptures, separating historical earthquakes to the south (1960 AD 1837, 1737, and 1575) and north (2010 AD, 1835, 1751, 1657, and 1570) of the peninsula. However, the 2010 (Mw 8.8) earthquake propagated into the Arauco Peninsula, re-rupturing part...
Authors
Tina Dura, Benjamin P. Horton, Macro Cisternas, Lisa L Ely, Isabel Hong, Alan R. Nelson, Robert L. Wesson, Jessica E. Pilarczyk, Andrew C. Parnell, Daria Nikitina
Modeling of high‐frequency seismic‐wave scattering and propagation using radiative transfer theory Modeling of high‐frequency seismic‐wave scattering and propagation using radiative transfer theory
This is a study of the nonisotropic scattering process based on radiative transfer theory and its application to the observation of the M 4.3 aftershock recording of the 2008 Wells earthquake sequence in Nevada. Given a wide range of recording distances from 29 to 320 km, the data provide a unique opportunity to discriminate scattering models based on their distance‐dependent behaviors...
Authors
Yuehua Zeng
Post-wildfire landscape change and erosional processes from repeat terrestrial lidar in a steep headwater catchment, Chiricahua Mountains, Arizona, USA Post-wildfire landscape change and erosional processes from repeat terrestrial lidar in a steep headwater catchment, Chiricahua Mountains, Arizona, USA
Flooding and erosion after wildfires present increasing hazard as climate warms, semi-arid lands become drier, population increases, and the urban interface encroaches farther into wildlands. We quantify post-wildfire erosion in a steep, initially unchannelized, 7.5 ha headwater catchment following the 2011 Horseshoe 2 Fire in the Chiricahua Mountains of southeastern Arizona. Using time...
Authors
Stephen B. DeLong, Ann M. Youberg, Whitney M. DeLong, Brendan P. Murphy
Implementing Nepal's national building code—A case study in patience and persistence Implementing Nepal's national building code—A case study in patience and persistence
The April 2015 Gorkha Nepal earthquake revealed the relative effectiveness of the Nepal Standard, or national building code (NBC), and irregular compliance with it in different parts of Nepal. Much of the damage to more than half a million Nepal's residential structures may be attributed to the prevalence of owner-built or owner-supervised construction and the lack of owner and builder
Authors
Lucy Arendt, Ayse Hortacsu, Kishor S. Jaiswal, John Bevington, Surya Shrestha, Forrest Lanning, Garmalia Mentor-William, Ghazala Naeem, Kate Thibert
Systematic observations of the slip pulse properties of large earthquake ruptures Systematic observations of the slip pulse properties of large earthquake ruptures
In earthquake dynamics there are two end member models of rupture: propagating cracks and self-healing pulses. These arise due to different properties of faults and have implications for seismic hazard; rupture mode controls near-field strong ground motions. Past studies favor the pulse-like mode of rupture; however, due to a variety of limitations, it has proven difficult to...
Authors
Diego Melgar, Gavin P. Hayes
Some results from ModEM3DMT, the freely available OSU 3D MT inversion code Some results from ModEM3DMT, the freely available OSU 3D MT inversion code
At the 3DEM-5 workshop in 2013, we presented a paper entitled "ModEM: developing 3D EM inversion for the masses", outlining our then recent development of a modular system for inversion of EM geophysical data, called ModEM. As promised in that presentation, we made a version of the code that is suitable for 3D modeling and inversion of magnetotelluric data freely available for academic...
Authors
Gary D. Egbert, Naser Meqbel, Anna Kelbert
3D ground‐motion simulations of Mw 7 earthquakes on the Salt Lake City segment of the Wasatch fault zone: Variability of long‐period (T≥1 s) ground motions and sensitivity to kinematic rupture parameters 3D ground‐motion simulations of Mw 7 earthquakes on the Salt Lake City segment of the Wasatch fault zone: Variability of long‐period (T≥1 s) ground motions and sensitivity to kinematic rupture parameters
We examine the variability of long‐period (T≥1 s) earthquake ground motions from 3D simulations of Mw 7 earthquakes on the Salt Lake City segment of the Wasatch fault zone, Utah, from a set of 96 rupture models with varying slip distributions, rupture speeds, slip velocities, and hypocenter locations. Earthquake ruptures were prescribed on a 3D fault representation that satisfies...
Authors
Morgan P. Moschetti, Stephen H. Hartzell, Leonardo Ramirez-Guzman, Arthur D. Frankel, Stephen J. Angster, William J. Stephenson
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