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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Kinematic bending of single piles in layered soil
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Kinematic bending of single piles in layered soil

机译:层层土壤中单桩的运动弯曲

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摘要

A continuum solution is proposed for the kinematic bending of single piles embedded in a layered soil deposit. A displacement model is proposed to represent the displacement of the model of interest incorporating soil-pile interaction. The displacement functions and the attenuation function are obtained in the coupled form by means of Hamilton's principle. Then an iterative procedure is applied to solve the coupled functions. The contributions of the proposed model are threefold: (1) The continuity of the Winkler springs is considered. (2) The effects of the inertial force of the surrounding soil on the kinematic response of the piles are taken into account. (3) An improved formula is proposed for the kinematic pile bending strain at the interface of two-layer soil deposit. A parametric study is performed to investigate the influence of the soil inhomogeneity on the kinematic bending of single piles. The results highlight that the stiffness discontinuity significantly influences the kinematic bending of single piles. There is a critical depth considering the effect of the pile head estimated as a non-dimensional length of the pile.
机译:提出了一种连续的解决方案,用于嵌入层状土壤沉积物中的单桩的运动弯曲。提出了一种位移模型来代表利用兴趣模型的位移,包括土桩相互作用。通过汉密尔顿原则,以耦合形式获得位移功能和衰减功能。然后应用迭代过程来解决耦合功能。所提出的模型的贡献是三倍:(1)考虑了Winkler弹簧的连续性。 (2)考虑了周围土壤惯性力对桩对桩运动响应的影响。 (3)提出了一种改进的公式,用于在双层土壤沉积物界面处进行运动桩弯曲菌株。进行参数研究以研究土壤不均匀性对单桩运动弯曲的影响。结果突出显示刚度不连续性显着影响单桩的运动弯曲。考虑桩头估计为桩的非尺寸长度,存在临界深度。

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