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Stress distribution of embedded caisson foundation under lateral load based on the continuum approach

机译:基于连续介质法的侧向荷载作用下预埋沉箱地基应力分布

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摘要

Abstract An analytical method is proposed to characterize the stress distribution of the soil around a caisson foundation under lateral load in an elastic half-space. A series of model-scale tests is performed to delineate the characteristics of lateral resistance stress along the foundation periphery. Accordingly, the mathematical expression of circumferential resistance stress is established based on the elastic-beam theory. Thereafter, the stress increment in the surrounding soil is derived by numerically integrating the Mindlin’s stress solution. The analytical solution for the stress variation in different directions can be solved by a numerical calculation program, the effectiveness of which is further evaluated by comparing with the experimental results. It is found that the stress increment of the soil around the caisson foundation decreases exponentially with the increase of the distance from the foundation side. The vertical additional stress is approximately saddle-shaped and anti-symmetric with respect to the x-axis and the y-axis of the foundation. A bridge project with caisson foundation is further analyzed using the proposed method to demonstrate the influence of caisson foundation geometry, including the embedment and the diameter, on the additional stress distribution.
机译:摘要 提出了一种分析方法,用于表征弹性半空间下沉箱地基周围土体在侧向荷载作用下的应力分布。通过一系列模型尺度的试验,刻画了沿地基周边的侧向阻力应力特征。因此,基于弹性梁理论建立了周向阻力应力的数学表达式。此后,通过对Mindlin应力解进行数值积分得出周围土壤中的应力增量。通过数值计算程序可以求解不同方向的应力变化解析解,并与实验结果进行对比,进一步评估了其有效性。结果表明,沉箱地基周围土体的应力增量随地基侧距离的增加呈指数减小;垂直附加应力近似于马鞍形,并且相对于基础的 x 轴和 y 轴是反对称的。采用该方法进一步分析了沉箱基础桥梁工程,证明了沉箱基础几何形状(包括嵌入和直径)对附加应力分布的影响。

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