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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Effects of Groundwater Level on Seismic Response of Soil-Foundation Systems
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Effects of Groundwater Level on Seismic Response of Soil-Foundation Systems

机译:地下水位对土基础系统地震反应的影响

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摘要

A set of dynamic centrifuge experiments was performed to assess the effect of the depth of the groundwater table on the seismic site response and kinematic interaction of a foundation on unsaturated sandy soil. The experimental program consisted of centrifuge tests on dry soils, saturated soils, and soils having groundwater level at various depths. Results show that as the groundwater level was lowered, (1) seismically induced soil settlement, the mean period of the free-field motion, and the midperiod amplification factor generally decreased; (2) the lateral incoherence parameter, soil strain-dependent natural frequency, and amplification factors for peak ground acceleration, Arias Intensity, and short period roughly increased; while (3) the rocking incoherence parameter stayed approximately constant. Assuming soils in a fully saturated state for seismic design may either over- or underpredict different aspects of the seismic soil-foundation response, in comparison with partially unsaturated ground. Thus, this assumption may not always lead to safe or economical designs, especially with regard to seismically induced soil settlement, seismic site response analysis, and kinematic soil-foundation interaction.
机译:进行一组动态离心实验,以评估地下水表深度对不饱和砂土地基地基地震响应和运动相互作用的影响。实验计划由在各种深度的干燥土壤,饱和土壤和土壤上的离心试验组成。结果表明,随着地下水位降低,(1)地震诱导的土壤沉降,自由场运动的平均周期,和中期扩增因子通常降低; (2)横向不连贯参数,土壤应变依赖性自然频率,以及峰接地加速,芳丽莎强度和短时间的放大因素大致增加;虽然(3)摇摆不振的参数保持近似恒定。假设与部分不饱和地相比,假设用于地震设计的完全饱和状态的地震设计状态可以过度或欠地面土壤基础反应的不同方面。因此,这种假设可能并不总是导致安全或经济的设计,特别是关于地震诱导的土壤沉降,地震位点响应分析和运动土壤基础相互作用。

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