Modeling of strong motion generation areas of the 2011 Tohoku, Japan earthquake using modified semi-empirical technique

被引:0
作者
A. Joshi
机构
[1] Indian Institute of Technology Roorkee,Department of Earth Sciences
来源
Natural Hazards | 2014年 / 71卷
关键词
Strong ground motion; Semi-empirical; Tohoku earthquake; Strong motion generation areas;
D O I
暂无
中图分类号
学科分类号
摘要
Modification in the semi-empirical technique for the simulation of strong ground motion has been introduced to incorporate the strong motion generation areas (SMGA) in the modeled rupture plane. Strong motion generation areas identified within the rupture plane of the Tohoku earthquake of March 11, 2011 (Mw = 9.0), have been modeled using this modified technique. Two different source models having four and five SMGAs, respectively, are considered for modeling purpose. Strong motion records using modified semi-empirical technique have been simulated at two near-field stations located at epicentral distance of 137 and 140 km, respectively, using two different source models. Comparison of the observed and simulated acceleration waveforms is made in terms of root mean square error (RMSE) at both stations. Minimum root mean square error of the waveform comparison has been obtained at both the stations for source model having five SMGAs. Simulations from same rupture model have been made at other four stations lying at epicentral distance between 154 and 249 km. Comparison of observed and simulated records has been made in terms of RMSE in acceleration records, velocity records and response spectra at each six station. Simulations have been made at six other stations to obtain distribution of peak ground acceleration and peak ground velocity with hypocentral distance. Peak ground acceleration and velocity from simulated and observed records are compared at twelve stations surrounding the source of Tohoku earthquake. Comparison of waveforms and parameters extracted from observed and simulated strong motion records confirms the efficacy of the developed modified technique to model earthquake characterized by SMGAs.
引用
收藏
页码:587 / 609
页数:22
相关论文
共 106 条
  • [11] Hadley DM(1964)Generation of artificial earthquakes Proc ASCE 90 113-150
  • [12] Helmberger DV(1985)Modeling earthquakes with empirical green’s functions (abs) Earthq Note 56 14-104
  • [13] Hanks TC(1983)Semi-empirical estimation of strong ground motion during large earthquakes Bull Dis Prev Res Inst 33 63-1743
  • [14] McGuire RK(1994)Estimation of strong ground motion in broad-frequency band based on a seismic source scaling model and an empirical green’s function technique Ann Geofis XXXVII 1721-518
  • [15] Hartzell SH(2001)Strong motion modelling of the source of the Chamoli earthquake of March 29, 1999 in the Garhwal Himalaya, India J Seismol 5 499-1805
  • [16] Hartzell SH(2004)A simplified technique for simulating wide band strong ground motion for two recent Himalaya earthquakes Pure Appl Geophys 161 1777-484
  • [17] Honda R(2004)A simplified method for simulation of strong ground motion using rupture model of the earthquake source J Seism 8 467-51
  • [18] Aoi S(2008)Simulation of accelerograms from simplified deterministic approach for the 23rd October 2004 Niigata-ken Chuetsu earthquake J Seismol 12 35-310
  • [19] Sekiguchi H(1997)Modelling of active lineaments for predicting a possible earthquake scenario around Dehradun, Garhwal Himalaya, India Tectonophysics 283 289-60
  • [20] Morikawa N(1999)Generation of synthetic accelerograms by modelling of rupture plane J Earthq Tech 36 43-901