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Estimation of Active Earth Pressure on Inclined Retaining Wall Based on Simplified Principal Stress Trajectory Method

机译:基于简化主应力轨迹法的斜式挡土墙主动土压力估算

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摘要

Because of the existence of wall-soil friction behind retaining wall, the transfer direction of the principal stress will be inevitably changed. Therefore, the arching effect of soil mass is considered and the circle principal stress trajectory is simplified to a tilt straight line. The differential thin-layer unit is divided along the direction of this approximate tilt linear principal stress trajectory. The major principal stress on the tilt linear principal stress trajectory is regarded as being linearly distributed with depth. Considering the limit equilibrium conditions of the layered soil, a new analytical method for determining the active earth pressure on the inclined retaining wall under translational mode in cohesionless soil mass is proposed. Compared with the measured values, the errors of the maximum active earth pressure obtained using the proposed method are less than 6%; thus, this method achieves satisfactory results. The parameter study indicated that the inclination of the retaining wall back has a significant influence on the failure angle of slip surface, the normal active earth pressure, and the height of application of the resultant force.
机译:由于挡土墙后存在壁-土摩擦,不可避免地会改变主应力的传递方向。因此,考虑了土体的拱效应,并将圆主应力轨迹简化为倾斜直线。沿该近似倾斜线性主应力轨迹的方向划分微分薄层单元。倾斜线性主应力轨迹上的主要主应力被认为是随深度线性分布的。考虑到层状土的极限平衡条件,提出了一种在无粘性土体中平移模式下确定倾斜挡土墙主动土压力的新分析方法。与实测值相比,该方法获得的最大有效土压力误差小于6%。因此,该方法获得令人满意的结果。参数研究表明,挡土墙背部的倾斜度对滑移面的破坏角,法向有效土压力和合力的施加高度有很大影响。

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