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Kinematic response of an end-bearing pile subjected to vertical P-wave considering the three-dimensional wave scattering

机译:考虑三维波散射的垂直P波作用下端承桩的运动学响应

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摘要

A rigorous three-dimensional model is developed for the investigation of the kinematic pile response under vertical P-wave excitations. The present model considers the equilibrium of soil and pile in both radial and vertical directions to account for the three-dimensional wave scattering. The closed-form series solution is obtained through an exact theoretical formulation. The effects of Poisson's ratio of pile, pile-soil modulus ratio, slenderness ratio of pile, and soil damping on the kinematic response factor and amplification factor are given. There is a slight influence of Poisson's ratio of pile on the kinematic response of the pile. The amplification effect is significant within a small range near the first resonance frequency. Long flexible piles would experience higher response amplification, and hence larger foundation input motion, compared to short pile. The equivalent dynamic kinematic Winkler modulus was also derived. It was found that the equivalent Winkler modulus is depth-dependent. The static Winkler modulus increases with depth and both the equivalent static and dynamic Winkler modulus are higher for short piles compared to the case for long pile at the same relative depth. The pile-soil modulus ratio was found to mainly affect the equivalent dynamic Winkler modulus along the upper parts of pile.
机译:建立了严格的三维模型,以研究垂直P波激励下的运动桩响应。本模型考虑了径向和垂直方向上土与桩的平衡,以解决三维波散射问题。闭式级数解是通过精确的理论公式获得的。给出了泊松比,桩土模量比,桩长比,土阻尼对运动响应因子和放大因子的影响。桩的泊松比对桩的运动学响应有轻微影响。在第一共振频率附近的小范围内,放大效果显着。与短桩相比,长的柔性桩将经历更高的响应放大,从而产生更大的地基输入运动。还推导出了等效的动态运动Winkler模量。发现等效的Winkler模量与深度有关。与相同深度下的长桩相比,短桩的静Winkler模量随深度增加,等效静,动态Winkler模量更高。发现桩土模量比主要影响沿桩上部的等效动态Winkler模量。

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