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Seismic passive resistance with vertical seepage and surcharge

机译:具有垂直渗流和附加力的地震被动抗力

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Present paper focuses on the computation of the seismic passive earth pressure acting on a vertical rigid retaining wall by a soil mass subjected to vertical steady-state seepage and a uniform surcharge load. Based on the basic assumptions of Coulomb's theory and a pseudo-static method of analysis, a general solution for the passive earth pressure containing two coefficients is presented. In the solution, many parameters, such as unit weight of saturated soil, soil effective internal friction angle, soil/wall friction angle, water/soil unit weight ratio, surcharge intensity coefficient, horizontal and vertical seismic acceleration coefficients, Poisson's ratio of soil mass, hydraulic gradient, and coefficients of pore water pressure, are considered. The effects of hydraulic gradient and seismic forces on passive earth pressure coefficient and passive earth pressure distribution are investigated. The results indicate that passive earth pressure increases with increasing hydraulic gradient for downward water flow case, but decreases for upward water flow case, and that the presence of seismic forces induces a reduction in passive earth pressure.
机译:本文的重点是计算承受竖向稳态渗流和均匀附加荷载的土体作用在竖向刚性挡土墙上的地震被动土压力。基于库仑理论的基本假设和伪静态分析方法,提出了包含两个系数的被动土压力的通用解。在解决方案中,有很多参数,例如饱和土的单位重量,土壤的有效内摩擦角,土/墙的摩擦角,水/土的单位重量比,附加强度系数,水平和垂直地震加速度系数,泊松比,水力梯度和孔隙水压力系数被考虑。研究了水力梯度和地震力对被动土压力系数和被动土压力分布的影响。结果表明,在水流向下的情况下,被动土压力随着水力梯度的增加而增加,而在水流向上的情况下,土压力则减小,并且地震力的存在导致被动土压力的降低。

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