Strong motion characteristics of the Mw 6.6 Lushan earthquake,Sichuan, China — an insight into the spatial difference of a typical thrust fault earthquake |
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作者姓名: | Hu Jinjun Zhang Wenbo Xie Lili Zhang Qi Jiang Zhijun |
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作者单位: | Key Laboratory of Earthquake Engineering and Engineering Vibration,Institute of Engineering Mechanics, China Earthquake Administration;College of Earth Science, University of Chinese Academy of Science;School of Civil Engineering,Harbin Institute of Technology |
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基金项目: | The Basic Science Research Foundation of Institute of Engineering Mechanics,CEA under Grant No.2011B02;as part of the National Natural Science Foundation of China under Grant Nos.51238012,91215301,973;Program under Grant No.2011CB013601;International Science&Technology Cooperation Program of China under Grant No.2012DFA70810 |
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摘 要: | ![]() Near-field strong ground motions are useful for engineering seismology studies and seismic design, but dense observation networks of damaging earthquakes are still rare. In this study, based on the strong-motion data from the M w 6.6 Lushan earthquake, the ground motion parameters in different spatial regions are systematically analyzed, and the contributions from different effects, like the hanging-wall effect, directivity effect, and attenuation effect are separated to the extent possible. Different engineering parameters from the observed ground motions are compared with the local design response spectra and a new attenuation relation of Western China. General results indicate that the high frequency ground motion, like the peak ground acceleration, on two sides of the fault plane is sensitive to the hanging-wall effect, whereas the low frequency ground motion, like the long period spectral acceleration, in the rupture propagation direction is affected by the directivity effect. Moreover, although the M w 6.6 Lushan earthquake is not a large magnitude event, the spatial difference of ground motion is still obvious; thus, for a thrust faulting earthquake, in addition to the hanging effect, the directivity effect should also be considered.
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关 键 词: | Lushan earthquake near-fi eld ground motion directivity hanging-wall effect attenuation relation |
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