Vertical seismic response of end-bearing piles in nearly-saturated soil

Changjie Zheng, Jingquan Yang, G. Kouretzis, Xuanming Ding
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Abstract

This paper presents a study on the effect of the degree of saturation of the foundation soil on the vertical seismic response of end-bearing piles subjected to P-waves. The research focuses on nearly-saturated soil, where the air phase is not continuous and air bubbles are dissolved in the pore water, thus can be treated as two-phase material. The response of the two-phase soil-pile system is quantified by means of a rigorous coupled hydromechanical model, which is based on Biot’s theory for poroelastic media and treats the air bubbles-pore water mixture as homogeneous fluid obeying Boyle’s law. Numerical results are used to illustrate the influence of the degree of saturation of the soil layer on the seismic strong motion transferred to the pile head i.e. the capacity of piles to filter seismic wave energy. This work bridges the gap between single-phase and two-phase saturated soil models, which predict profoundly different pile head displacements at incident wave frequencies of practical interest, and elucidates the mechanisms that lead to these differences.
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近饱和土壤中端承桩的垂直地震响应
本文研究了地基土的饱和度对承受 P 波的端承桩垂直地震响应的影响。研究的重点是近饱和土,其中的气相并不连续,气泡溶解在孔隙水中,因此可视为两相材料。两相土壤-桩系统的响应通过严格的耦合水力机械模型进行量化,该模型以孔弹性介质的 Biot 理论为基础,将气泡-孔水混合物视为服从波义耳定律的均质流体。数值结果用于说明土层饱和度对传递到桩头的地震强运动的影响,即桩头过滤地震波能量的能力。单相饱和土模型和两相饱和土模型预测的桩头位移在实际应用中的入射波频率存在很大差异,这项研究填补了这两者之间的空白,并阐明了导致这些差异的机理。
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