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Analysis of micro characteristics and influence factors of foundation pit failure

机译:基坑破坏的微观特征及影响因素分析

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摘要

Combined with the design data of an actual foundation pit, PFC (Particle Flow Code) model was developed and micro characteristics such as porosity, displacement vector field and particle rotation were analyzed when a foundation pit with cantilever soldier pile was unstable. The effect of overload, embedded pile depth and the angle of internal friction of soil on instability of the foundation pit were further analyzed. The results indicate that the displacement field under different overload is distinctly different. When piles are shallowly embedded, the foundation pit is apt to be overall unstable and a triangular shaped area of intense shearing and considerable particle rotation appears to form. The soil mass outside the pit compresses at the beginning and subsequently dilates during the failure of the pit. It is shown that factors such as ground overload and the angle of internal friction of soil greatly affect the overturning stability and the slip failure of the foundation pit.
机译:结合实际基坑的设计数据,建立了PFC(颗粒流代码)模型,分析了悬臂士兵桩基坑不稳定时的孔隙率,位移矢量场和颗粒旋转等微观特征。进一步分析了过载,埋桩深度和土的内摩擦角对基坑失稳的影响。结果表明,不同过载下的位移场明显不同。当桩浅埋时,基坑容易变得整体不稳定,并且会形成强烈剪切和相当大的颗粒旋转的三角形区域。矿坑外部的土壤团块在开始时压缩,随后在矿坑破坏期间膨胀。结果表明,地面超载,土体内摩擦角等因素对基坑的倾覆稳定性和基坑滑移破坏有较大影响。

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