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首页> 外文期刊>International Journal of Solids and Structures >A macro-element to simulate 3D soil-structure interaction considering plasticity and uplift
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A macro-element to simulate 3D soil-structure interaction considering plasticity and uplift

机译:考虑塑性和隆起的模拟3D土-结构相互作用的宏单元

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In structural engineering, soil-structure interaction (SSI) is an important phenomenon that has to be taken into account. This paper presents a 3D non-linear interface element able to compute SSI based on the "macro-element" concept. The particularity of the macro-element lies in the fact that the movement of the foundation is entirely described by a system of generalised variables (forces and displacements) defined at the foundation centre. The non-linear behaviour of the soil and the uplift mechanism of the foundation are reproduced using the plasticity theory. The failure surface is defined using an adequate overturning mechanism. Coupling of the different mechanisms is straight forward following the theory of multi-mechanisms. The macro-element is able to simulate the 3D behaviour of a rigid shallow foundation of circular, rectangular or strip shape, submitted to cyclic loadings. It is implemented into FEDEASLab, a finite element MATLAB toolbox. Comparisons with experimental results under cyclic loadings show the performance of the approach.
机译:在结构工程中,土-结构相互作用(SSI)是必须考虑的重要现象。本文提出了一种能够基于“宏元素”概念计算SSI的3D非线性接口元素。宏观元素的特殊性在于,基础的运动完全由在基础中心定义的广义变量(力和位移)系统来描述。利用可塑性理论再现了土壤的非线性行为和地基的抬升机理。使用适当的倾覆机制定义破坏面。遵循多机制理论,直接将不同的机制耦合起来。宏单元能够模拟圆形,矩形或条形的刚性浅基础的3D行为,该基础经受周期性载荷。它被实现为FEDEASLab(有限元MATLAB工具箱)。在循环载荷下与实验结果的比较表明了该方法的性能。

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