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Vertical bearing capacity of tapered piles in sands using cavity expansion theory

机译:基于空腔扩张理论的砂土中锥形桩的竖向承载力

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摘要

On the basis of the mechanism of tapered piles and evidence obtained from small scale model tests, this paper proposes cylindrical and spherical cavity expansion theories to evaluate the skin friction by introducing a stress-dilatancy relationship, as well as the end bearing capacity of tapered piles by introducing a tapering factor. In general, in order to evaluate the skin friction, either the angle of internal friction or dilatancy angle is assumed to be constant. This research improves on this drawback and considers both properties to calculate the skin friction through an iterative process in the load transfer method. At the mean time, the effect of angle of tapering is introduced to evaluate the end bearing capacity of tapered piles. The test results and proposed models show that a slight increase in the tapering angle of the pile results in higher skin friction and affects the end bearing resistance compared with conventional straight piles on different types of sands at different relative densities. The proposed models are then applied to different types of prototype and real type pile tests in order to evaluate the predicted skin friction, expected end bearing capacity and vertical bearing capacity.
机译:根据锥形桩的作用机理和小规模模型试验的证据,提出了圆柱和球形空腔膨胀理论,通过引入应力-剪胀关系以及锥形桩的最终承载力来评估蒙皮摩擦力。通过引入渐缩因子。通常,为了评估皮肤摩擦,假定内摩擦角或膨胀角是恒定的。这项研究改善了这个缺点,并考虑了这两种属性,以通过负载传递方法中的迭代过程来计算皮肤摩擦。同时,介绍了锥角的影响,以评估锥形桩的最终承载力。测试结果和建议的模型表明,与传统的直桩相比,在不同相对密度的不同类型砂子上,桩的锥角略有增加会导致更高的蒙皮摩擦力并影响端部承载力。然后将提出的模型应用于不同类型的原型和实型桩试验,以评估预测的表皮摩擦,预期的最终承载力和垂直承载力。

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