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Pseudo-dynamic approach of seismic active earth pressure behind retaining wall

机译:挡土墙后地震主动土压力的拟动力方法

摘要

Knowledge of seismic active earth pressure behind rigid retaining wall is very important in the design of retaining wall in earthquake prone region. Commonly used Mononobe-Okabe method considers pseudo-static approach, which gives the linear distribution of seismic earth pressure in an approximate way. In this paper, the pseudo-dynamic method is used to compute the distribution of seismic active earth pressure on a rigid retaining wall supporting cohesionless backfill in more realistic manner by considering time and phase difference within the backfill. Planar rupture surface is considered in the analysis. Effects of a wide range of parameters like wall friction angle, soil friction angle, shear wave velocity, primary wave velocity and horizontal and vertical seismic accelerations on seismic active earth pressure have been studied. Results are provided in tabular and graphical non-dimensional form with a comparison to pseudo-static method to highlight the realistic non-linearity of seismic active earth pressures distribution.
机译:了解刚性挡土墙后的地震主动土压力对于地震多发地区挡土墙的设计非常重要。常用的Mononobe-Okabe方法考虑了伪静态方法,该方法以近似的方式给出了地震土压力的线性分布。本文采用拟动力方法,通过考虑回填内的时间和相位差,以更实际的方式计算支撑无粘性回填的刚性挡土墙上地震活动土压力的分布。分析中考虑了平面破裂面。研究了壁摩擦角,土壤摩擦角,剪切波速度,一次波速度以及水平和垂直地震加速度等各种参数对地震活动土压力的影响。结果以表格和图形的无量纲形式提供,并与伪静态方法进行了比较,以突出地震活动土压力分布的实际非线性。

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