3D Finite Element Analysis of Lateral Loaded Pile using Beam and Rigid Link

Du-Hee Park, Jongbae Park, Sang-Yeon Kim, Yong-Boo Park
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Abstract

The BNWF (Beam on Nonlinear Winkler Foundation) model is one of the simplest idealizations for a pile embedded in soil as it ignores the continuity of the soil. This method is difficult to model the behavior of pile group foundation subjected to lateral loading. The limitation can be overcome with the utilization of the finite element method (FEM) or finite different method (FDM) to represent a pile element embedded in a soil medium. Both the ground and piles are modeled with soild elements. The solid elements, which do not have rotational degree of freedom, is not appropriate for modeling piles. It can be overcome by substantially increasing the number of elements, which can be prohibitive for 3D modeling. This paper used the beam element and rigid link incorporated in the OpenSees to model the pile. The accuracy of the model is validated through comparison with lateral load test and BNWF analysis. It is shown that the method can capture the measured behavior accurately. It is therefore recommended to be used in group pile analyses.
梁-刚杆横向荷载桩的三维有限元分析
非线性温克勒地基梁模型(BNWF)是一种最简单的土中桩的理想化模型,因为它忽略了土的连续性。这种方法难以模拟群桩基础在侧向荷载作用下的受力特性。利用有限元法(FEM)或有限差分法(FDM)来表示嵌入土介质中的桩单元可以克服这一限制。地基和桩均采用实体单元建模。不具有转动自由度的实体单元不适合用于桩的建模。它可以通过大幅增加元素的数量来克服,这对于3D建模来说可能是令人望而却步的。本文采用OpenSees中引入的梁单元和刚杆对桩进行建模。通过与横向荷载试验和BNWF分析的对比,验证了模型的准确性。结果表明,该方法能准确地捕捉到被测物体的行为。因此,建议在群桩分析中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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