Engineering topics
Donnellan, A.
Publications and source records attributed to Donnellan, A..
Geomorphic and Geologic Controls of Geohazards induced by Nepal's 2015 Gorkha Earthquake
The Gorkha earthquake (Magnitude 7.8) on 25 April 2015 and later aftershocks struck South Asia, killing approx.9,000 and damaging a large region. Supported by a large campaign of responsive satellite data acquisitions over the earthquake disaster zone, our team undertook a satellite image survey of the earthquakes induced geohazards in Nepal and China and an assessment of the geomorphic, tectonic, and lithologic controls on quake-induced landslides. Timely analysis and communication aided response and recovery and informed decision makers. We mapped 4,312 co-seismic and post-seismic landslides. We also surveyed 491 glacier lakes for earthquake damage, but found only 9 landslide-impacted lakes and no visible satellite evidence of outbursts. Landslide densities correlate with slope, peak ground acceleration, surface downdrop, and specific metamorphic lithologies and large plutonic intrusions.
Use of QuakeSim and UAVSAR for Earthquake Damage Mitigation and Response
Spaceborne, airborne, and modeling and simulation techniques are being applied to earthquake risk assessment and response for mitigation from this natural disaster. QuakeSim is a web-based portal for modeling interseismic strain accumulation using paleoseismic and crustal deformation data. The models are used for understanding strain accumulation and release from earthquakes as well as stress transfer to neighboring faults. Simulations of the fault system can be used for understanding the likelihood and patterns of earthquakes as well as the likelihood of large aftershocks from events. UAVSAR is an airborne L-band InSAR system for collecting crustal deformation data. QuakeSim, UAVSAR, and DESDynI (following launch) can be used for monitoring earthquakes, the associated rupture and damage, and postseismic motions for prediction of aftershock locations.
Plans for living on a restless planet sets NASA's solid Earth agenda
What are the most important challenges facing solid Earth science today and over the next two decades? And what is the best approach for NASA, in partnership with other agencies, to address these challenges? A new report, living on a restless planet, provides a blueprint for answering these questions. The top priority for a new spacecraft mission in the area of solid earth science over the next 5 years, according to this report, is a satellite dedicated to interferometric synthetic aperture radar(inSAR).
Performance modeling codes for the QuakeSim problem solving environment
The QuakeSim Problem Solving Environment uses a web-services approach to unify and deploy diverse remote data sources and processing services within a browser environment. Here we focus on the high-performance crustal modeling applications that will be included in this set of remote but interoperable applications.
Glacial isostatic motion in Antarctica from continuous global positioning system measurements: results from the northern transantarctic Mountains and Marie Byrd Land
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Detecting features in seismic and geodetic data
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Seismology and geology monitoring using satellite navigation systems
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The Solid Earth Research Virtual Observatory: A web-based system for modeling multi-scale earthquake processes
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GPS evidence for present-day dextral shear between East and West Antarctica and postglacial rebound in Marie Byrd Land
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Numerical simulations for active tectonic processes: increasing interoperability and performance
The objective of this project is to produce a system to fully model earthquake-related data. This task develops simulation and analysis tools to study the physics of earthquakes using state-of-the-art modeling.
Combined GPS and InSAR models of postseismic deformation from the Northridge Earthquake
Models of combined Global Positioning System and Interferometric Synthetic Aperture Radar data collected in the region of the Northridge earthquake indicate that significant afterslip on the main fault occurred following the earthquake.
GPS measurement of tectonic deformation and isostatic rebound in Marie Byrd Land, Antartica
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JPL Solution for the Co- and Immediate Post-Seismic Displacements of SCIGN Stations in the 1999 Hector Mine Earthquake
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Shortening and Thickening of Metropolitan Los Angeles Measured and Inferred Using Geodesy
Geodetic measurements using the Global Positioning System and other techniques show north-south shortening near Los Angeles to be fastest across the northern part of the metropolitan area, where an ESE-striking, 5- to 40-km-wide belt lying to the south of San Gabriel Mountains and to the north of downtown and West Los Angeles is shortening at 5 mm/yr.
Use of GPS and InSAR Technology and its Further Development in Earthquake Modeling
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Use of GPS and InSAR Technology and its Further Development in Earthquake Modeling
Global Positioning System (GPS) data are useful for understanding both interseismic and postseismic deformation. Models of GPS data suggest that the lower crust, lateral heterogeneity, and fault slip, all provide a role in the earthquake cycle.