Results 101 to 110 of about 138 (125)
New insights into earthquake precursors from InSAR. [PDF]
Moro M +14 more
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A case for historic joint rupture of the San Andreas and San Jacinto faults. [PDF]
Lozos JC.
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Use of scenario ensembles for deriving seismic risk. [PDF]
Robinson TR +5 more
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Highly variable recurrence of tsunamis in the 7,400 years before the 2004 Indian Ocean tsunami. [PDF]
Rubin CM +6 more
europepmc +1 more source
Levelling profiles and a GPS network to monitor the active folding and faulting deformation in the Campo de Dalias (Betic Cordillera, southeastern Spain). [PDF]
Marín-Lechado C +13 more
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SEISMONOISY: A Quasi-Real-Time Seismic Noise Network Monitoring System. [PDF]
Ruzza G +9 more
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Soil Dynamics and Earthquake Engineering, 2021
Abstract In this study, Material Point Method (MPM) is improved to simulate coseismic slope stability and liquefaction-induced embankment failure under earthquake loading. First, by using elastic or elastoplastic models, topographic amplification and different slope failure modes are analyzed considering the effects of slope geometry, soil properties
Wang Gang, Duruo Huang
exaly +3 more sources
Abstract In this study, Material Point Method (MPM) is improved to simulate coseismic slope stability and liquefaction-induced embankment failure under earthquake loading. First, by using elastic or elastoplastic models, topographic amplification and different slope failure modes are analyzed considering the effects of slope geometry, soil properties
Wang Gang, Duruo Huang
exaly +3 more sources
Environmental Earth Sciences, 2020
The Portoviejo city, located in the central part of the Ecuadorian Pacific Coast (province of Manabi), was severely affected during the Pedernales Mw 7.8 earthquake of April 16, 2016, accompanied by coseismic liquefaction phenomena that induced processes of ground subsidence, lateral spreading, sinkhole, and sand boils.
Eduardo Ortiz Hernández +2 more
exaly +2 more sources
The Portoviejo city, located in the central part of the Ecuadorian Pacific Coast (province of Manabi), was severely affected during the Pedernales Mw 7.8 earthquake of April 16, 2016, accompanied by coseismic liquefaction phenomena that induced processes of ground subsidence, lateral spreading, sinkhole, and sand boils.
Eduardo Ortiz Hernández +2 more
exaly +2 more sources
The Leading Edge, 2021
Abstract The Mirpur area of Pakistan was severely damaged by extensive coseismic liquefaction following an earthquake of Mw 5.8 on 24 September 2019. Villages within 6 km of the epicenter were adversely affected due to extensive coseismic liquefaction-induced surface and shallow subsurface deformations.
Muhammad Younis Khan +7 more
openaire +2 more sources
Abstract The Mirpur area of Pakistan was severely damaged by extensive coseismic liquefaction following an earthquake of Mw 5.8 on 24 September 2019. Villages within 6 km of the epicenter were adversely affected due to extensive coseismic liquefaction-induced surface and shallow subsurface deformations.
Muhammad Younis Khan +7 more
openaire +2 more sources
Near Surface Geophysics, 2021
ABSTRACTAn electrical resistivity tomography survey was conducted to assess the subsurface conditions associated with the coseismic liquefaction phenomenon in the epicentral region following the Mw 5.8 Mirpur earthquake (Pakistan) on 24 September 2019.
Muhammad Younis Khan +8 more
openaire +1 more source
ABSTRACTAn electrical resistivity tomography survey was conducted to assess the subsurface conditions associated with the coseismic liquefaction phenomenon in the epicentral region following the Mw 5.8 Mirpur earthquake (Pakistan) on 24 September 2019.
Muhammad Younis Khan +8 more
openaire +1 more source

