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首页> 外文期刊>Journal of earthquake and tsunami >Finite element analysis of pipe buried in saturated soil deposit subject to earthquake loading
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Finite element analysis of pipe buried in saturated soil deposit subject to earthquake loading

机译:地震作用下饱和土中埋管的有限元分析

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摘要

A coupled stress-flow finite element procedure, based on dynamic Biot equations, was used to analyze the behavior of pipe buried in liquefiable soil. The governing equations, soil constitutive model, finite element discretization and solutions were described. The results of analysis were compared with two cases of dynamic centrifuge test of soil deposit and pipe conducted at 30 g acceleration field. The horizontal soil deposit was analyzed followed by the deposit having a buried pipe of diameter 10 cm (3 m in prototype). The deposit was composed of loose Nevada sand that was saturated with a viscous solution in satisfying the similitude rules of time for the dynamic event and diffusion phenomena. The response of the ground, such as acceleration and excess pore water pressure, and the earth pressure and uplifting of the pipe, were presented and compared. The results of analysis indicated that a coupled stress-flow finite element procedure where the soil was expressed by Pastor-Zienkiewicz Mark-III model was able to simulate the dynamic response of the soil and pipe up to the stage of liquefaction. Several other issues related to the analysis were discussed.
机译:基于动态毕奥特方程的应力流耦合有限元程序,用于分析埋在可液化土壤中的管道的性能。描述了控制方程,土本构模型,有限元离散化和解。将分析结果与在30 g加速场下进行的土壤沉积物和管道动态离心试验的两个案例进行了比较。分析了水平土壤沉积物,然后分析了直径为10 cm(原型为3 m)的埋管的沉积物。该矿床由内华达州松散的沙子组成,该沙子被粘性溶液饱和,以满足动态事件和扩散现象的时间相似规则。提出并比较了地面的响应,例如加速度和多余的孔隙水压力,以及土压力和管道的隆起。分析结果表明,采用Pastor-Zienkiewicz Mark-III模型表示土壤的耦合应力流有限元程序能够模拟液化阶段之前土壤和管道的动力响应。讨论了与分析有关的其他几个问题。

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