单桩相互作用下土体液化敏感性的数值模拟

Q4 Earth and Planetary Sciences
Ahmad Asaadi, M. Sharifipour
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引用次数: 6

摘要

以往的案例历史表明,在地震中,土壤液化严重破坏了许多桩基支撑结构。因此,失稳潜力评估是深地基抗震安全设计的重要考虑因素。本文采用有限差分法模拟了单桩作用下饱和砂土的液化敏感性。采用非线性有效应力分析方法评价土壤液化,并采用界面单元考虑桩土相互作用。定义参数Ru为孔隙水压力比,用于研究土体在一段时间内的液化情况。采用三种不同主频率和峰值加速度的地震动对松散、半致密和致密三种不同凝结程度的土体进行了数值模拟。利用超孔隙压力、横向运动和沉降时间史研究了这些参数的影响。通过对近桩和自由场响应的比较,发现桩对土体的液化敏感性有影响。然而,对于不同的土壤和地震特征,发现土壤液化和触发的深度是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of liquefaction susceptibility of soil interacting by single pile
Previous case histories have shown that soil liquefaction severely damaged many structures supported on pile foundations during earthquakes. As a result, evaluating the potential for instability is an important consideration for the safe and resistant design of deep foundation against earthquakes. In this study, the liquefaction susceptibility of saturated sand interacting by single concrete pile was simulated by means of finite difference method. A nonlinear effective stress analysis was used to evaluate soil liquefaction, and the soil-pile interaction was considered using interface elements. The parameter Ru was defined as the pore water pressure ratio to investigate liquefaction in the soil mass during time. A set of numerical models were carried out by three types of soil mass with various condensation (loose, semi-dense and dense) under three ground motion with different predominant frequencies and peak accelerations. The effect of these parameters was studied using excess pore pressure, lateral movement and settlement time histories. It was found that the pile can affect the liquefaction susceptibility of soil by comparing the near pile and free field responses. However, for various soil and earthquake characteristics, it was found that the depth of soil liquefaction and triggering, varies.
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
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0
审稿时长
12 weeks
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