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Soil-pile-bridge structure interaction in liquefying ground using shake table testing

机译:振动台试验研究液化土中土-桩-桥梁结构的相互作用

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The evaluation of seismic pile response is particularly useful for geotechnical engineers involved in the design of foundations in liquefying site. Shake table testing was performed to study the dynamic interactive behavior of soil-pile foundations in liquefying ground under different shaking frequency and amplitude. The soil profile consisted of a clayey layer over liquefiable sand over clay. The model was tested with a series of El Centra earthquake motions with peak accelerations ranging from 0.15g to 0.50g, and time step from 0.006 to 0.02 s. Representative data, including time histories of accelerations and excess pore pressure ratios that characterize the important aspects of soil-pile interaction in liquefying ground are presented. The shaking frequency has no significant effect on the magnitudes of excess pore pressure ratio, ground and pile accelerations and pile bending moments. Excess pore pressure ratio, ground acceleration and pile acceleration, and pile bending moment largely depend on the shaking amplitude.
机译:地震桩响应的评估对于参与液化场地基设计的岩土工程师尤其有用。进行了振动台试验,研究了在不同振动频率和振幅下,液化土中桩基的动力相互作用行为。土壤剖面由在粘土上的可液化沙子上的粘土层组成。该模型通过一系列El Centra地震运动进行了测试,其峰值加速度范围为0.15g至0.50g,时间步长为0.006至0.02 s。给出了代表性的数据,包括加速度的时间历史和过高的孔隙压力比,它们表征了液化土中土-桩相互作用的重要方面。振动频率对过剩孔隙压力比,地面和桩的加速度以及桩的弯矩的大小没有显着影响。多余的孔隙压力比,地面加速度和桩加速度以及桩弯矩在很大程度上取决于振动幅度。

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