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Efficient solution for a single pile under torsion

机译:在扭转下单桩的高效解决方案

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摘要

This paper presents a simple and more efficient solution mechanism for solving the linear response of a single pile with a circular cross section under torque in "n" multilayered soils. The pile-soil system is modeled by a series of independent springs distributed along the pile shaft with each spring representing an individual layer of soil. The properties of each soil layer are assumed constant with the allowance for variation from layer to layer. The method is based on the energy principles and variational approach initially proposed by Vallabhan and Mustafa (1996) for a single pile under a vertical load, developed by Guo and Lee (2001) for a single pile under a lateral load, and developed by Zhang (2010) and Misra et al. (2013) for a pile under torque. With the proposed iterative solution scheme, the equivalent stiffness of a soil-pile system of individual pile segments is calculated from the bottom element to the top element, while torque and the angles of twist are calculated from the top element to the bottom element of the pile without having to simultaneously solve a large number of equations. The solution provides: (1) the distribution of the angles of twist, (2) the distribution of torque along the pile and (3) the equivalent stiffness of the pile-soil system. A comparison of the results of the analysis using the proposed new solution mechanism with those of existing analytical solutions and a three-dimensional finite element analysis shows that the proposed method is much more efficient. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本文提出了一种简单且更高效的解决方案机制,用于求解单个桩的线性响应,圆形横截面在“N”多层土壤中的扭矩下。桩土系统由沿着桩轴分布的一系列独立弹簧,每个弹簧代表单独的土壤。假设每个土壤层的性质恒定,允许从层到层的变化。该方法基于Vallabhan和Mustafa(1996)最初提出的能量原理和变分方法,以在垂直载荷下为单桩进行单桩,由郭和李(2001)开发,在横向载荷下,并由张(2010)和Misra等人。 (2013)在扭矩下的桩。利用所提出的迭代解方案,从底部元件到顶部元件计算各个桩段的土桩系统的等效刚度,而扭矩和扭曲的角度由顶部元件计算到底部元件堆不必同时解决大量方程。该解决方案提供:(1)扭曲角度的分布,(2)沿着桩的扭矩分布和(3)桩土体系的等效刚度。使用所提出的新解决方案机制与现有分析解的方法和三维有限元分析的分析结果的比较表明,所提出的方法更有效。 (c)2018年Elsevier B.V的生产和托管代表日本岩土工会。

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