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Analytical bearing capacity of strip footing in weightless materials with power-law failure criteria

机译:具有幂律失效准则的失重材料中带材基础的分析承载力

摘要

Sokolovskii’s method of characteristics is extended to provide analytical solutions for the ultimate load at the moment of plastic failure under plane-strain conditions of shallow strip foundations on weightless rigid-plastic media with a noncohesive power-law failure envelope. The formulation is made parametrically in terms of the instantaneous friction angle, and the key idea to obtain the bearing capacity is that information can be transmitted from the free surface (where external loads are known) to the contact plane of the foundation. The methodology can consider foundations adjacent to a slope, external surcharges at the free surface, and inclined loads (both on the slope and on the foundation). Sensitivity analyses illustrate the influence on bearing capacity of changes in the different geometrical parameters involved. An application example is presented and design plots are provided, and model predictions are compared with results of bearing capacity tests under low gravity.
机译:Sokolovskii的特性方法得到了扩展,可以为浅层地基在平面应变条件下在无重力幂律破坏包络的轻质刚性塑料介质上的平面应变条件下的塑性破坏时的极限载荷提供分析解决方案。该参数是根据瞬时摩擦角进行参数化设置的,获得承载力的关键思想是可以将信息从自由表面(已知外部载荷)传输至地基接触平面。该方法可以考虑邻近斜坡的地基,自由表面的外部附加费和倾斜载荷(在斜坡和地基上)。敏感性分析说明了所涉及的不同几何参数变化对承载能力的影响。给出了一个应用实例,并提供了设计图,并将模型预测与低重力下的承载力测试结果进行了比较。

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