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Soil resistances for laterally loaded rigid piles in multi-layered elastic soil

机译:多层弹性土中侧向荷载的刚性桩的土抗性

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摘要

Short stubby piles like monopiles and large diameter drilled shafts undergo rigid body translation and rotation when subjected to a lateral force and/or a moment at the head. A method of analysis for these piles embedded in multi-layered elastic soil is developed using the variational principles of mechanics. Using this analysis, the soil resistance against pile movement can be rigorously related to the soil elastic constants, and the pile head displacement and rotation can be quickly calculated. The equilibrium equations for pile and soil displacements are obtained using the principle of virtual work and solved using an iterative algorithm. Pile responses obtained from the analysis match well with those obtained from three-dimensional finite element analyses in which the same inputs of loads, geometry, and material properties are given. Based on the new analysis, fitted equations for soil resistance parameters are developed, which can be used to directly calculate the pile head displacement and rotation without the use of the iterative algorithm. Numerical examples are provided that demonstrate how the method can be used to analyse practical problems.
机译:短短桩如单桩和大直径钻杆,在受到侧向力和/或头部力矩时会发生刚体平移和旋转。利用力学的变分原理,提出了一种对多层弹性土中埋置的桩进行分析的方法。使用此分析,可以将土壤抵抗桩运动的能力与土壤弹性常数严格相关,并且可以快速计算桩头的位移和旋转。利用虚拟工作原理获得了桩土位移的平衡方程,并使用迭代算法进行求解。从分析中获得的桩响应与从三维有限元分析获得的桩响应非常匹配,在三维有限元分析中给出了相同的载荷,几何形状和材料特性输入。在新分析的基础上,建立了土抗性参数的拟合方程,可用于直接计算桩头位移和旋转,而无需使用迭代算法。提供的数值示例说明了如何使用该方法来分析实际问题。

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