Strong ground motion simulation for the 2013 MS7.0 Lushan,China,earthquake
Yao Xiaodong
Zhang Wenbo
Abstract:The near source strong ground motions of the 2013 MS 7.0 Lushan, China,earthquake were simulated using empirical Green’s function (EGF ) method.At first,we estimated the amount and location of strong motion gene-ration areas (SMGAs)based on the characteristics of both slip distributions from far-field seismic inversion and the envelopes of recorded acceleration from the main shock,and determined the amount of subfaults on SMGAs referring to the scaling law of asperity area versus seismic moment introduced by Somerville et al .Then,we implemented the genetic algorithm searching for the optimized value of above two and other source parameters.Based on the source models, we synthetized the waveforms for the 30 selected stations near the source region.The comparison of the synthetic waveforms with the observed recordsindicated that they agreed very well with each other,especially for the part ofhigh-frequency larger than 1 Hz.We found that there were two obvious SMGAson the fault,which take the position that the asperities from far-field seismicinversion take.The combined SMGAs we obtained were smaller than those predictedby extension of the scaling law by Somerville et al .
Keywords:strong ground motionLushan MS 7.0 earthquakeempirical Green’s function methodsource parameterwaveform comparison
Publication Date:2015-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:18( 599-616 )
