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A Numerical Study of the Active Earth Pressure on a Rigid Retaining Wall for Various Modes of Movements

机译:刚性挡土墙上各种运动模式下主动土压力的数值研究

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The magnitude and the application point of the resultant active earth pressure are two key problems in the design of a variety of civil engineering structures. Experimental results indicate that these parameters are affected by the wall movements. In this paper, series of two- dimensional finite difference analyses have been carried out using the code FLAC (Fast Lagrangian Analyses of Continua) to study the active earth pressure distribution behind a retaining wall under horizontal translation, rotation about the bottom, and rotation about the top modes of wall displacements. The computation results show remarkable similarity to experimental results available in the literature indicating that the active earth pressure distribution is nonlinear due to the arching effect. It is found that, for a wall under translational and base rotation modes, the active earth pressure is substantially hydrostatic except at the wall base where curvature was observed. These two wall modes are in good agreement with classical solutions. However, the earth pressure distribution due to rotation about the top is found far from the hydrostatic distribution and is highly affected by the arching effect.
机译:产生的活动土压力的大小和作用点是各种土木工程结构设计中的两个关键问题。实验结果表明,这些参数受壁运动的影响。在本文中,已经使用代码FLAC(Continua的快速拉格朗日分析)进行了一系列二维有限差分分析,以研究水平平移,绕底部旋转和绕旋转时挡土墙后面的主动土压力分布。墙位移的最主要方式。计算结果显示出与文献中的实验结果非常相似,表明由于拱效应,有效土压力分布是非线性的。发现,对于在平移和基础旋转模式下的墙,活动土压力基本上是静水压力,除了在观察到弯曲的墙基础处。这两种墙模式与经典解决方案非常吻合。但是,发现由于绕顶部旋转而引起的土压力分布远离静水压力分布,并且受拱效应的影响很大。

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