Coseismic vertical deformation of the M sub(S)8.0 Wenchuan earthquake from repeated levelings and its constraint on listric fault geometry

The devastating M sub(S)8.0 Wenchuan earthquake ruptured two large parallel thrust faults along the middle segment of the Longmenshan thrust belt. Preseismic and postseismic leveling data indicated the hanging wall of the Yingxiu-Beichuan-Nanba thrust fault mainly presented coseismic uplift with res...

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Veröffentlicht in:Earthquake science 2009-12, Vol.22 (6), p.595-602
Hauptverfasser: Wang, Qingliang, Cui, Duxin, Zhang, Xi, Wang, Wenping, Liu, Jinwen, Tian, Kang, Song, Zhaoshan
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Sprache:eng
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Zusammenfassung:The devastating M sub(S)8.0 Wenchuan earthquake ruptured two large parallel thrust faults along the middle segment of the Longmenshan thrust belt. Preseismic and postseismic leveling data indicated the hanging wall of the Yingxiu-Beichuan-Nanba thrust fault mainly presented coseismic uplift with respect to the reference point at Pingwu county town, and the observed maximum uplift of 4.7 m is located at Beichuan county (Qushan town) which is about 100 m west of the fault scarp. The foot wall of the Yingxiu-Beichuan-Nanba thrust fault mainly showed subsidence with maximum subsidence of 0.6 m near the rupture. By employing a listric dislocation model, we found that the fault geometry model of exponential dip angle delta =88 degree [1-exp(-9 /h)] with depth of 18 km and uniform thrust-slip of 5.6 m could fit the observed coseismic vertical deformation very well, which verifies the listric thrust model of the Longmenshan orogenic zone.
ISSN:1674-4519
1867-8777
DOI:10.1007/s11589-009-0595-z