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Efficient 3D nonlinear Winkler model for shallow foundations

机译:浅层地基的高效3D非线性Winkler模型

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This paper presents a new practical modeling approach, based on the beam-on-a-nonlinear Winkler foundation (BNWF) model, to simulate the 3D rocking, vertical and horizontal responses of shallow foundations using structural elements that are readily available in the element library of commercially available structural analysis programs. An assemblage of a moment-rotation hinge, shear hinge connected in series with an elastic frame member attached to the bottom end of ground story columns was proposed to model the response of the footing under combined action of vertical, horizontal and moment loading. To couple the responses of these hinges, two bounding surfaces equations were introduced and derived mathematically: a surface that defines the interaction between the rocking and vertical capacities of the footing along its width and length; and a surface that defines the interaction between the horizontal capacities of the footing along its width and length. Simple calculation steps to evaluate the geometric and mechanical properties of the proposed assemblage of structural elements are provided. The proposed modeling approach was verified using experimental results from large scale model foundations subjected to cyclic loading. Based on this study, it was found that the proposed assemblage can be reliably used in modeling the rocking and horizontal responses of shallow foundations under cyclic loading.
机译:本文基于非线性温克勒基础(BNWF)模型,提出了一种新的实用建模方法,该方法可使用单元库中易于使用的结构单元来模拟浅基础的3D摇摆,垂直和水平响应商业上可获得的结构分析程序。提出了一个力矩旋转铰链,剪切铰链与一个弹性框架构件串联的组合,该弹性框架构件附接到地层柱的底端,以对竖向,水平和力矩荷载组合作用下的基础响应进行建模。为了耦合这些铰链的响应,引入了两个边界表面方程,并以数学方式得出:定义沿脚宽度和长度的脚的摇摆和垂直能力之间相互作用的表面;以及一个表面,该表面定义了基础沿其宽度和长度的水平能力之间的相互作用。提供了简单的计算步骤,以评估建议的结构元件组合的几何和机械性能。所提出的建模方法已使用大型模型基础承受循环载荷的实验结果进行了验证。根据这项研究,发现所提出的组合可以可靠地用于模拟循环荷载作用下浅基础的摇摆和水平响应。

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