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Analytical solution for laterally loaded long piles based on Fourier-Laplace integral

机译:基于傅立叶-拉普拉斯积分的水平受力长桩的解析解

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摘要

Piles are frequently used to support lateral loads. Elastic solutions based on the Winkler foundation model are widely used to design laterally loaded piles at working load. This paper reports a simplified analytical solution for laterally loaded long piles in a soil with stiffness linearly increasing with depth. Based on a Fourier-Laplace integral, a power series solution for small depth and a Wentzel-Kramers-Brillouin (WKB) asymptotic solution for large depth are derived. By using this analytical solution, the deflection and bending moment profiles of a laterally loaded pile can be obtained through simple calculation. The proposed power series solution is exact for infinitely long piles. Numerical examples show that this solution agrees well with other existing methods on predicting the deflection and bending moment of laterally loaded piles. The WKB asymptotic solution developed in this study has never been introduced before. The simplified analytical solution obtained in this study provides a better approach for engineers to analyze the responses and design of laterally loaded long piles.
机译:桩经常用于支撑侧向荷载。基于Winkler基础模型的弹性解决方案被广泛用于设计工作荷载下的水平荷载桩。本文报告了一种刚度随深度线性增加的土壤中侧向加载长桩的简化分析方法。基于傅里叶-拉普拉斯积分,推导出小深度的幂级数解和大深度的Wentzel-Kramers-Brillouin(WKB)渐近解。通过使用这种分析解决方案,可以通过简单的计算来获得侧向荷载桩的挠曲和弯矩曲线。所提出的幂级数解特别适合无限长的桩。数值算例表明,该解决方案与其他现有方法在预测侧向受力桩的挠曲和弯矩方面非常吻合。这项研究中开发的WKB渐近解从未被引入过。本研究中获得的简化分析解决方案为工程师分析侧向加载的长桩的响应和设计提供了一种更好的方法。

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