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Active Earth Pressures for Unsaturated Retaining Structures

机译:不饱和挡土结构的主动土压力

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摘要

Although commonly ignored in classical earth pressure methods, precipitation-induced failures in retaining structures highlight a need for explicit consideration of negative pore pressures or matric suction. Changes in the degree of saturation in the backfill can significantly affect active earth pressures. This paper presents an analytical framework for calculating the thrust of active earth pressures under unsaturated steady flow conditions. The proposed method addresses limitations associated with the collapse mechanism and effective stress representation in alternative analytical methods. The formulation was derived by implementing an analytical solution for one-dimensional (1D) steady flow into a limit equilibrium-based effective stress analysis. A closed-form solution for the thrust was obtained by employing a log spiral surface, considering the effect of tension cracks, backslope inclination, and batter for c'-φ' soils with variable backfill saturation. A unified effective stress representation was used to describe the state of stress in partially saturated soils. The method was evaluated for different hypothetical soil types, and the effect of infiltration on lateral earth pressures was demonstrated. This approach presents a useful tool for explaining the true service state behavior of walls and evaluating the forensics of failed structures.
机译:尽管在经典的土压法中通常被忽略,但降水引起的固位结构破坏突出表明需要明确考虑负孔隙压力或基质吸力。回填土中饱和度的变化会显着影响活动土压力。本文提出了一个计算框架,用于计算非饱和稳定流条件下的主动土压力。拟议的方法解决了与坍塌机制相关的局限性以及替代分析方法中的有效应力表示方法。通过将一维(1D)稳定流的分析解决方案实施到基于极限平衡的有效应力分析中,得出了该公式。考虑到张力回填,后坡倾角和面糊对具有可变回填饱和度的c'-φ'土的影响,采用对数螺旋表面获得了推力的封闭形式解。使用统一的有效应力表示法来描述部分饱和土壤中的应力状态。对不同的假设土壤类型对该方法进行了评估,并证明了入渗对侧向土压力的影响。这种方法提供了一个有用的工具,用于解释墙的真实服务状态行为并评估失效结构的取证。

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