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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Shear Modulus Degradation Curves of Gravelly and Clayey Soils Based on KiK-Net In Situ Seismic Observations
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Shear Modulus Degradation Curves of Gravelly and Clayey Soils Based on KiK-Net In Situ Seismic Observations

机译:基于KiK-Net原位地震观测的砾石土和黏性土的剪切模量衰减曲线

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摘要

In this paper, the nonlinearity of the gravelly and clayey soils in Japan is investigated based on the Kiban Kyoshin network (KiK-net) downhole array seismic observations. Shear modulus reduction ratios at 18 sites under 165 strong motions are calculated by comparing the response amplification spectra (surface response normalized by bedrock response) subjected to strong motions with those subjected to weak motions and are plotted versus the corresponding seismically induced shear strains. The back-calculated shear modulus reduction ratios are categorized into several groups under different effective confining pressures, and a best-fit line is proposed for each group as the corresponding empirical shear modulus degradation curve. The obtained results are compared with the existing studies based on both in situ and laboratory tests, highlighting the influence of different testing techniques on nonlinear soil behavior. Furthermore, a modified cyclic nonlinear model is used to formulate the proposed empirical curves to account for the shear modulus degradation under a wide range of effective confining pressure. This modified model can then be used to Specify material constitutive relationships for the future numerical analysis of geotechnical structures under seismic loads.
机译:本文基于Kiban Kyoshin网络(KiK-net)井下阵列地震观测资料,研究了日本砾石和黏土的非线性。通过将经受强运动的响应放大谱(经基岩响应归一化的表面响应)与经受弱运动的响应放大光谱(通过基岩响应归一化的表面响应)进行比较,计算18个位置处的剪切模量降低率,并相对于相应的地震感应剪切应变作图。在不同有效围压下,反算的剪切模量降低率可分为几组,并为每组提出一条最佳拟合线,作为相应的经验剪切模量下降曲线。将获得的结果与基于原位和实验室测试的现有研究进行比较,强调了不同测试技术对非线性土壤行为的影响。此外,使用改进的循环非线性模型来公式化提出的经验曲线,以解决在较大有效围压范围内的剪切模量下降的情况。然后,可以使用此修改后的模型来指定材料本构关系,以用于地震荷载下岩土结构的未来数值分析。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2017年第9期|06017008.1-06017008.18|共18页
  • 作者单位

    CIECC Engineering Construction Project Management Corporation, 25 Che Gong Zhuang West Rd., Beijing 100048, China;

    Dept. of Geoscience and Engineering, Delft Univ. of Technology, P.O. Box 5048, 2600 GA Delft, Netherlands;

    School of Civil Engineering, Qingdao Univ. of Technology, Qingdao 266033, China;

    School of Civil Engineering, Shandong Univ., Jinan 250061, China;

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