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Application of Effective Stress Model to Analysis of Liquefaction and Seismic Performance of an Earth Dam in China

机译:有效应力模型在中国土坝液化与地震性能分析中的应用

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摘要

Earthquake-induced liquefaction is one of the major causes of catastrophic earth dam failure. In order to assess the liquefaction potential and analyze the seismic performance of an earth dam in Fujian, Southeastern China, the in situ shear wave velocity test was firstly carried out. Results indicate that the gravelly filling is a type of liquefiable soil at present seismic setting. Then the effective stress model was adopted to thoroughly simulate the response of the soil to a proposed earthquake. Numerical result generally coincides with that of the empirical judgment based on in situ test. Negative excess pore pressure developed in the upper part of the saturated gravelly filling and positive excess pore pressure developed in the lower part. The excess pore pressure ratio increases with depth until it reaches a maximum value of 0.45. The displacement of the saturated gravelly soil is relatively small and tolerable. Results show that the saturated gravelly filling cannot reach a fully liquefied state. The dam is overall stable under the proposed earthquake.
机译:地震诱导的液化是灾难性地坝故障的主要原因之一。为了评估液化潜力并分析福建东南部地震潜力的地震性能,首先进行了原位剪切波速试验。结果表明,砾石填充是目前地震设定的一种液化土。然后采用有效的应力模型来彻底模拟土壤的响应到建议地震。数值结果通常与基于原位试验的经验判断的结果一致。在饱和砾石填充的上部产生负过孔压力和在下部产生的阳性过量的孔隙压力。过度的孔隙压力比随着深度增加,直至其达到最大值为0.45。饱和砾石土的位移相对较小可容忍。结果表明,饱和的砾石填充不能达到完全液化状态。大坝在拟议地震下整体稳定。

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