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Effect of super-structure frequency on the seismic behavior of pile-raft foundation using physical modeling

机译:物理模型对上部结构频率对桩筏基础抗震性能的影响

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摘要

This paper presents the results of two physical test series, including shaking table and centrifuge modeling, on two super-structures with different frequencies and supported by piled raft foundations in a dry sand bed. While the height and weight of two super-structures were kept constant, the axial force and bending moment of piles, as well as horizontal displacement of super-structures were recorded during seismic loadings. The input seismic loadings were given different amplitudes and frequencies. The shaking table and the centrifuge test results indicated that the super-structure frequency strongly affected the pile-raft system responses. Based on the centrifuge test results, the super-structure had larger horizontal displacement, when the excitation frequency was close to system frequency with low base acceleration (0.14 g), while subsequently, axial force and bending moment of piles increased. In high input base acceleration (0.4 g), excitation frequency dominated the superstructure response, and larger responses occurred at smaller (1 Hz) input excitation frequency.
机译:本文介绍了两个物理测试系列的结果,包括振动台和离心机模型,它们是在两个频率不同且由干沙床中的桩筏基础支撑的超结构上进行的。在两个上部结构的高度和重量保持恒定的同时,在地震荷载作用下记录了桩的轴向力和弯矩以及上部结构的水平位移。输入的地震荷载具有不同的振幅和频率。振动台和离心机测试结果表明,上部结构频率强烈影响桩筏系统的响应。根据离心机测试结果,当激励频率接近系统频率且基础加速度较低(0.14 g)时,上部结构具有较大的水平位移,随后桩的轴向力和弯矩增大。在较高的基本输入加速度(0.4 g)下,激励频率主导了上部结构响应,在较小的输入激励频率(1 Hz)下出现了较大的响应。

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