首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >General Solution for Active Earth Pressure on Rigid Walls Under Strip Surcharge on Retained Soils Using Variational Method
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General Solution for Active Earth Pressure on Rigid Walls Under Strip Surcharge on Retained Soils Using Variational Method

机译:使用变分法在保留土壤中刚性壁上的主动接地压力的一般解决方案

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Hypothesis of the slip surface shape in retained soils makes most of the existing methods for active earth pressure on rigid walls be of no logical basis. The present work aims to rigorously calculate the earth pressure under general conditions. Based on the limit equilibrium conditions of a soil mass retained by rigid walls under a distanced backfill strip surcharge, a variational calculus method was developed to compute the active earth pressure on the walls. A functional relationship between the earth thrust and critical slip surface of the retained soil, and the normal stress acting on it without considering the hypothesis of the slip surface shape, were established. A unified closed-form solution for the earth thrust was derived and could be obtained using an implicit solution technique via MATLAB. The analysis model is of high generality, and the effects of 11 basic parameters on the earth thrust and the corresponding slip surface were analyzed. Some of the considered parameters were the soil properties, soil-wall interface friction angle, wall height, strip surcharge, dip angle between the wall back and soil top surface, horizontal net distance from the wall back to the surcharge, and distribution width of the surcharge. The examples showed that the earth thrusts calculated using the proposed method were approximately 4-16% higher than Coulomb's solutions but 3-11% lower than traditional stress distribution solutions based on the elastic theory. The proposed method in which the critical slip surface shape need not be subjectively assumed has comparatively more extensive applicability.
机译:保留土壤中滑动表面形状的假设使得大部分现有的刚性墙壁上的接地压力方法没有逻辑的基础。本工作旨在严格计算一般条件下的地球压力。基于在远距离回填条附加额度下由刚性壁保留的土壤质量的极限平衡条件,开发了分解微积分以计算墙壁上的主动接地压力。建立了保留土的地震和临界滑动表面的功能关系,以及在不考虑滑动表面形状的假设的情况下作用的正常应力。衍生出用于接地推力的统一闭合溶液,可以通过MATLAB使用隐式解决方案技术获得。分析模型具有高的一般性,分析了11个基本参数对地球推力和相应滑动表面的影响。一些考虑的参数是土壤性质,土壁界面摩擦角,壁高,条带附加费,墙壁背部和土壤顶面之间的倾角,距离墙壁的水平净距离返回附加费,以及分布宽度附加费。该实施例表明,使用该方法计算的地球推力比Coulomb的溶液高约4-16%,但基于弹性理论,比传统的应力分布解决方案低3-11%。所提出的方法,其中临界滑动表面形状不需要主动假设具有相对更广泛的适用性。

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