Publications
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USGS 1-min Dst index USGS 1-min Dst index
We produce a 1-min time resolution storm-time disturbance index, the USGS Dst, called Dst8507-4SM. This index is based on minute resolution horizontal magnetic field intensity from low-latitude observatories in Honolulu, Kakioka, San Juan and Hermanus, for the years 1985–2007. The method used to produce the index uses a combination of time- and frequency-domain techniques, which more...
Authors
J.L. Gannon, Jeffrey J. Love
Earthquake impact scale Earthquake impact scale
With the advent of the USGS prompt assessment of global earthquakes for response (PAGER) system, which rapidly assesses earthquake impacts, U.S. and international earthquake responders are reconsidering their automatic alert and activation levels and response procedures. To help facilitate rapid and appropriate earthquake response, an Earthquake Impact Scale (EIS) is proposed on the...
Authors
David J. Wald, K. S. Jaiswal, K. D. Marano, D. Bausch
Developing empirical collapse fragility functions for global building types Developing empirical collapse fragility functions for global building types
Building collapse is the dominant cause of casualties during earthquakes. In order to better predict human fatalities, the U.S. Geological Survey’s Prompt Assessment of Global Earthquakes for Response (PAGER) program requires collapse fragility functions for global building types. The collapse fragility is expressed as the probability of collapse at discrete levels of the input hazard...
Authors
K. Jaiswal, D. Wald, D. D’Ayala
Controls on large landslide distribution and implications for the geomorphic evolution of the southern interior Columbia River basin Controls on large landslide distribution and implications for the geomorphic evolution of the southern interior Columbia River basin
Large landslides (>0.1 km2) are important agents of geomorphic change. While most common in rugged mountain ranges, large landslides can also be widespread in relatively low-relief (several 100 m) terrain, where their distribution has been relatively little studied. A fuller understanding of the role of large landslides in landscape evolution requires addressing this gap, since the...
Authors
E.B. Safran, S.W. Anderson, M. Mills-Novoa, P.K. House, L. Ely
Landslide inventories: The essential part of seismic landslide hazard analyses Landslide inventories: The essential part of seismic landslide hazard analyses
A detailed and accurate landslide inventory is an essential part of seismic landslide hazard analysis. An ideal inventory would cover the entire area affected by an earthquake and include all of the landslides that are possible to detect down to sizes of 1–5 m in length. The landslides must also be located accurately and mapped as polygons depicting their true shapes. Such mapped...
Authors
E. L. Harp, D. K. Keefer, H.P. Sato, H. Yagi
Rapid Source Characterization of the 2011 Mw 9.0 off the Pacific coast of Tohoku Earthquake Rapid Source Characterization of the 2011 Mw 9.0 off the Pacific coast of Tohoku Earthquake
On March 11th, 2011, a moment magnitude 9.0 earthquake struck off the coast of northeast Honshu, Japan, generating what may well turn out to be the most costly natural disaster ever. In the hours following the event, the U.S. Geological Survey National Earthquake Information Center led a rapid response to characterize the earthquake in terms of its location, size, faulting source...
Authors
Gavin P. Hayes
Secular trends in storm-level geomagnetic activity Secular trends in storm-level geomagnetic activity
Analysis is made of K-index data from groups of ground-based geomagnetic observatories in Germany, Britain, and Australia, 1868.0–2009.0, solar cycles 11–23. Methods include nonparametric measures of trends and statistical significance used by the hydrological and climatological research communities. Among the three observatory groups, German K data systematically record the highest...
Authors
J.J. Love
Integration of paleoseismic data from multiple sites to develop an objective earthquake chronology: Application to the Weber segment of the Wasatch fault zone, Utah Integration of paleoseismic data from multiple sites to develop an objective earthquake chronology: Application to the Weber segment of the Wasatch fault zone, Utah
We present a method to evaluate and integrate paleoseismic data from multiple sites into a single, objective measure of earthquake timing and recurrence on discrete segments of active faults. We apply this method to the Weber segment (WS) of the Wasatch fault zone using data from four fault-trench studies completed between 1981 and 2009. After systematically reevaluating the...
Authors
Christopher B. DuRoss, Stephen F. Personius, Anthony J. Crone, Susan S. Olig, William R. Lund
Quantifying the influence of sea ice on ocean microseism using observations from the Bering Sea, Alaska Quantifying the influence of sea ice on ocean microseism using observations from the Bering Sea, Alaska
Microseism is potentially affected by all processes that alter ocean wave heights. Because strong sea ice prevents large ocean waves from forming, sea ice can therefore significantly affect microseism amplitudes. Here we show that this link between sea ice and microseism is not only a robust one but can be quantified. In particular, we show that 75–90% of the variability in microseism...
Authors
Victor C. Tsai, Daniel E. McNamara
Long-period earthquake simulations in the Wasatch Front, UT: misfit characterization and ground motion estimates Long-period earthquake simulations in the Wasatch Front, UT: misfit characterization and ground motion estimates
In this research we characterize the goodness-of-fit between observed and synthetic seismograms from three small magnitude (M3.6-4.5) earthquakes in the region using the Wasatch Front community velocity model (WCVM) in order to determine the ability of the WCVM to predict earthquake ground motions for scenario earthquake modeling efforts. We employ the goodness-of-fit algorithms and...
Authors
Morgan P. Moschetti, Leonardo Ramírez-Guzmán
Earthquake casualty models within the USGS Prompt Assessment of Global Earthquakes for Response (PAGER) system Earthquake casualty models within the USGS Prompt Assessment of Global Earthquakes for Response (PAGER) system
Since the launch of the USGS’s Prompt Assessment of Global Earthquakes for Response (PAGER) system in fall of 2007, the time needed for the U.S. Geological Survey (USGS) to determine and comprehend the scope of any major earthquake disaster anywhere in the world has been dramatically reduced to less than 30 min. PAGER alerts consist of estimated shaking hazard from the ShakeMap system...
Authors
Kishor Jaiswal, David J. Wald, Paul S. Earle, Keith A. Porter, Mike Hearne
Spring-fall asymmetry of substorm strength, geomagnetic activity and solar wind: Implications for semiannual variation and solar hemispheric asymmetry Spring-fall asymmetry of substorm strength, geomagnetic activity and solar wind: Implications for semiannual variation and solar hemispheric asymmetry
We study the seasonal variation of substorms, geomagnetic activity and their solar wind drivers in 1993–2008. The number of substorms and substorm mean duration depict an annual variation with maxima in Winter and Summer, respectively, reflecting the annual change of the local ionosphere. In contradiction, substorm mean amplitude, substorm total efficiency and global geomagnetic activity...
Authors
K. Mursula, E. Tanskanen, J.J. Love