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首页> 外文期刊>International journal of geomechanics >Estimation of the Linear Spring Constant for a Laterally Loaded Monopile Embedded in Nonlinear Soil
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Estimation of the Linear Spring Constant for a Laterally Loaded Monopile Embedded in Nonlinear Soil

机译:埋入非线性土中的单桩横向弹性常数的估计

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摘要

In the case of large-diameter monopiles, pile deflection against lateral loads must be predicted accurately to determine the direct influence on the superstructure. One-dimensional (1D) linear models of the pile-soil system, which are simple to analyze, are more commonly used in practice than the sophisticated three-dimensional (3D) simulations. This study proposes an equivalent lateral strain concept to incorporate soil nonlinearity into an equivalent linear analysis of the pile-soil system. The spring constant is obtained by iterating over soil stiffness at different strain levels and finding equivalent lateral strain from updated pile deflection at each iteration. It requires the maximum shear modulus and modulus reduction curve for different layers of the soil profile. Correlation between the equivalent lateral strain and pile deflection has been developed by comparing results from 1D and 3D simulations of long piles. The existing correlations between the lateral spring constant and Young's modulus of soil are too approximate to help in quantifying nonlinearity of soil accurately in this comparative study. Therefore, a more accurate relationship between spring constant and Young's modulus of soil for long piles has been proposed by incorporating relative stiffness of soil and pile. (C) 2014 American Society of Civil Engineers.
机译:在大直径单桩的情况下,必须准确预测桩对横向载荷的挠度,以确定对上部结构的直接影响。与复杂的三维(3D)模拟相比,桩-土系统的一维(1D)线性模型易于分析,在实践中更为常用。这项研究提出了等效的横向应变概念,将土壤非线性纳入桩-土系统的等效线性分析中。通过迭代不同应变水平下的土壤刚度并在每次迭代中从更新的桩挠度中找到等效的横向应变来获得弹簧常数。它要求不同剖面的土壤剖面具有最大剪切模量和模量减少曲线。通过比较长桩的1D和3D模拟结果,已经开发出等效的横向应变与桩变形之间的相关性。在此比较研究中,横向弹簧常数与土壤的杨氏模量之间的现有关系太接近,无法帮助准确定量土壤的非线性。因此,通过结合土和桩的相对刚度,提出了长桩的弹簧常数和土的杨氏模量之间更精确的关系。 (C)2014年美国土木工程师学会。

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