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Combined dynamic structure-pile-soil interaction analysis considering inertial and kinematic effects

机译:综合动态结构 - 桩土相互作用分析考虑惯性和运动效应

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摘要

This study developed a combined dynamic analysis model for analyzing the response of piles when subjected to inertial and kinematic effects under seismic loading. A structure-pile-soil model connected to a shear beam model was established to simultaneously account for both these effects. Centrifuge shaking table testing was conducted on two piles that were partially embedded in dry sand to verify the appropriateness of the model. The two piles in the prototype scale (under a centrifugal acceleration of 80 g) were 36 and 27.8 m long and embedded in a 25.4-m-thick sand layer with a relative density of approximately 80%. The analysis results reveal that the combined model can reasonably simulate the structure acceleration and pile bending responses. The analysis model was further used to explore the influence of ground movement and the contributions of ground movement and inertial effects. Although the ground is stiff, the effect of ground movement is also significant to the acceleration response of the structure. Thus, the magnitude of inertial loading is further influenced, especially when the excitation frequency is near the fundamental frequency of the ground. The contributions of the inertial and kinematic effects are influenced by the excitation frequency and amplitude, in addition to the fundamental frequencies of the structure-pile-soil system and ground.
机译:该研究开发了一种组合的动态分析模型,用于分析桩在地震载荷下造成惯性和运动效应时的堆积。建立了连接到剪切梁模型的结构 - 桩土模型,同时考虑这些效果。离心机振动台测试在两层堆叠上,部分嵌入干砂中,以验证模型的适当性。原型刻度(在离心式加速度为80g)中的两个桩长36和27.8米,嵌入25.4米厚的砂层中,相对密度约为80%。分析结果表明,组合模型可以合理地模拟结构加速度和桩弯曲响应。分析模型进一步用于探索地面运动的影响和地面运动的贡献和惯性效应。虽然地面刚刚坚硬,但地面运动的效果对结构的加速度响应也意义。因此,惯性负载的大小进一步影响,特别是当激发频率接近地面的基频时。除了结构桩土体系和地面的基本频率之外,惯性和运动效应的贡献受激发频率和振幅的影响。

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