Extrusion deformation process of ground surface during the Lushan earthquake in China

Based on finite element method, the extrusion deformation process of ground surface during the Lushan earthquake (April 20, 2013) is investigated in this work. In order to construct the finite element model of Lushan earthquake structure, the geophysical layer model of Lushan area, the frictional ch...

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Main Author: Yuzhu Bai
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2017-03-01
Series:Geodesy and Geodynamics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674984717300174
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spelling doaj-8e2f2bb4082a43818acbb80d9b1b0eea2021-02-02T04:08:41ZengKeAi Communications Co., Ltd.Geodesy and Geodynamics1674-98472017-03-0182848910.1016/j.geog.2017.01.007Extrusion deformation process of ground surface during the Lushan earthquake in ChinaYuzhu BaiBased on finite element method, the extrusion deformation process of ground surface during the Lushan earthquake (April 20, 2013) is investigated in this work. In order to construct the finite element model of Lushan earthquake structure, the geophysical layer model of Lushan area, the frictional characteristic of slip-weaken along the fault surface, and the Coulomb failure criterion are considered. Through the computation and the comparison with achievement on the Lushan focal dynamics, our researches indicate that: (1) The most extrusion deformation of ground surface occurred in the initial phase of earthquake procession, i.e., between the fourth and sixth seconds after the earthquake occurred. (2) Between the first and sixth seconds after the earthquake, the extrusion deformation concentrates on the surface projection of earthquake fault. (3) Between the first and third seconds after the earthquake, the extrusion deformation of ground surface is very tiny. Meanwhile, the extrusion deformation reaches maximum at the sixth second after earthquake. (4) After 6 s of Lushan earthquake, the extrusion deformation spread out of earthquake structure projection. (5) During the earthquake, the maximum of extrusion deformation on ground surface is larger than the final deformation of the post-earthquake, in other words, the ground extrusion deformation will lastly reach a relatively small value after the Lushan earthquake occurred.http://www.sciencedirect.com/science/article/pii/S1674984717300174Lushan earthquakeExtrusion deformationFinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Yuzhu Bai
spellingShingle Yuzhu Bai
Extrusion deformation process of ground surface during the Lushan earthquake in China
Geodesy and Geodynamics
Lushan earthquake
Extrusion deformation
Finite element method
author_facet Yuzhu Bai
author_sort Yuzhu Bai
title Extrusion deformation process of ground surface during the Lushan earthquake in China
title_short Extrusion deformation process of ground surface during the Lushan earthquake in China
title_full Extrusion deformation process of ground surface during the Lushan earthquake in China
title_fullStr Extrusion deformation process of ground surface during the Lushan earthquake in China
title_full_unstemmed Extrusion deformation process of ground surface during the Lushan earthquake in China
title_sort extrusion deformation process of ground surface during the lushan earthquake in china
publisher KeAi Communications Co., Ltd.
series Geodesy and Geodynamics
issn 1674-9847
publishDate 2017-03-01
description Based on finite element method, the extrusion deformation process of ground surface during the Lushan earthquake (April 20, 2013) is investigated in this work. In order to construct the finite element model of Lushan earthquake structure, the geophysical layer model of Lushan area, the frictional characteristic of slip-weaken along the fault surface, and the Coulomb failure criterion are considered. Through the computation and the comparison with achievement on the Lushan focal dynamics, our researches indicate that: (1) The most extrusion deformation of ground surface occurred in the initial phase of earthquake procession, i.e., between the fourth and sixth seconds after the earthquake occurred. (2) Between the first and sixth seconds after the earthquake, the extrusion deformation concentrates on the surface projection of earthquake fault. (3) Between the first and third seconds after the earthquake, the extrusion deformation of ground surface is very tiny. Meanwhile, the extrusion deformation reaches maximum at the sixth second after earthquake. (4) After 6 s of Lushan earthquake, the extrusion deformation spread out of earthquake structure projection. (5) During the earthquake, the maximum of extrusion deformation on ground surface is larger than the final deformation of the post-earthquake, in other words, the ground extrusion deformation will lastly reach a relatively small value after the Lushan earthquake occurred.
topic Lushan earthquake
Extrusion deformation
Finite element method
url http://www.sciencedirect.com/science/article/pii/S1674984717300174
work_keys_str_mv AT yuzhubai extrusiondeformationprocessofgroundsurfaceduringthelushanearthquakeinchina
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