Li Lin, Wen Ruizhi, Zhou Baofeng, Shi Dacheng. 2013: Selection and scaling of ground motion records for great scenario earthquakes based on the conditional mean spectrum. Acta Seismologica Sinica, 35(3): 380-389. DOI: 10.3969/j.issn.0253-3782.2013.03.009
Citation: Li Lin, Wen Ruizhi, Zhou Baofeng, Shi Dacheng. 2013: Selection and scaling of ground motion records for great scenario earthquakes based on the conditional mean spectrum. Acta Seismologica Sinica, 35(3): 380-389. DOI: 10.3969/j.issn.0253-3782.2013.03.009

Selection and scaling of ground motion records for great scenario earthquakes based on the conditional mean spectrum

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  • Received Date: March 07, 2012
  • Revised Date: September 04, 2012
  • Published Date: April 30, 2013
  • In this paper, PEER ground motion database(PGMD) at the Pacific earthquake engineering research center (PEER) was updated by 141 groups of ground motion records in Japan Tohoku earquake on March 11, 2011, building an attenuation model of acceleration response spectrum of MW9.0, having expanded the limitation of this database. Following the disaggregation results from probabilistic seismic hazard analysis, the scenario earthquake and the conditional mean spectrum (CMS) were set up as the target requirement and the selection, and scaling of ground motions for the great scenario earthquake was addressed finally. The results show that the expanded database could reflect the different selection and scaling of strong motion records in great earthquakes, and the suggested method could be applied to the structural spectrum analysis.
  • 耿淑伟. 2005. 抗震设计规范中地震作用的规定[D]. 哈尔滨: 中国地震局工程力学研究所: 3-9.
    胡聿贤. 2006. 地震工程学[M]. 北京: 地震出版社: 133-134.
    王刚. 2010. 地震波选择方法, 工具, 及其在基于性能的抗震设计中的应用[C]//第四届粤港澳地震科技研讨会. 香港: 香港天文台: 9.
    温瑞智, 周宝峰, 史大成, 任叶飞. 2011. 日本MW9.0地面运动观测与记录初步分析[J]. 国际地震动态, (4): 16-21.
    Abrahamson N A, Silva W J. 2008. Summary of the Abrahamson & Silva NGA groundmotion relations[J]. Earthq Spectra, 24(1): 67-97.
    Baker J W, Cornell C A. 2005. A vector-valued ground motion intensity measure consisting of spectral acceleration and epsilon[J]. Earthq Eng Struct D, 34(10): 1193-1217.
    Baker J W, Cornell C A. 2006a. Spectral shape, epsilon and record selection[J]. Earthq Eng Struct D, 35(9): 1077-1095.
    Baker J W, Cornell C A. 2006b. Correlation of response spectral values for multi-component ground motions[J]. Bull Seism Soc Amer, 96(1): 215-227.
    Boore D. 2008. TSPP-A Collection of FORTRAN Programs for Processing and Manipulating Time Series[R]. U S Geological Survey Open-File Report.
    Boore D M, Atkinson G M. 2008. Ground-motion prediction equations for the average horizontal component of PGA, PGV, and 5% damped PSA at spectral periods between 0.01 s and 10.0 s[J]. Earthq Spectra, 24(1): 99-138.
    Campbell K W, Bozorgnia Y. 2008. NGA ground motion model for the geometric mean horizontal component of PGA, PGV, PGD, and 5% damped linear elastic response spectra for periods ranging from 0.01s to 10.0 s[J]. Earthq Spectra, 24(1): 139-171.
    Chiou B S J, Youngs R R. 2008. Chiou-Youngs NGA ground motion relations for the geometric mean horizontal component of peak and spectral ground motion parameters[J]. Earthq Spectra, 24(1): 173-215.
    Cornell C A. 2006. Should uniform hazard spectra be used for design? How should design response spectra be determined considering uniform hazard spectra from design maps and hazard deaggregation data?[R]. Proceedings of the Third ATC-35/USGS National Earthquake Ground Motion Mapping Workshop. San Mateo, December 7-8.
    Housner G W. 1975. Measure of Severity of Earthquake Ground Shaking[R]. 2nd US NCEE. Ann Arbor, Michgan.
    Idriss I M. 2008. An NGA empirical model for estimating the horizontal spectral values generated by shallow crustal earthquakes[J]. Earthq Spectra, 24(1): 217-242.
    Jayaram N, Lin T, Baker J W. 2011. A computationally efficient ground-motion selection algorithm for matching a target response spectrum mean and variance[J]. Earthq Spectra, 27(3): 797-815.
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