Adaptive Finite Element Technique for Thermal Stress Analysis of Built-Up Structures

P. Dechaumphai
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引用次数: 4

Abstract

An adaptive finite element technique for thermal stress analysis of built-up structures has been developed. A finite element formulation for a triangular membrane element and a new plate bending element, used for modelling such structures under both mechanical and thermal loadings, is presented. The associated finite element matrices have been derived in closed form. The performance of the new plate bending element is evaluated for a plate with temperature gradient through its thickness by comparing the predicted solution with the exact solution. The effectiveness of the adaptive meshing technique combined with the finite element method is evaluated by thermal stress analysis of a built-up structure with intersecting panels. The application demonstrates that the adaptive meshing technique can provide an accurate solution with fewer elements and shorter computational time than the standard finite element procedure.
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建筑结构热应力分析的自适应有限元技术
提出了一种适用于建筑结构热应力分析的自适应有限元技术。提出了一种三角膜单元和一种新的板弯曲单元的有限元公式,用于模拟机械和热载荷下的这种结构。相关的有限元矩阵以封闭形式导出。通过将预测解与精确解的比较,对具有温度梯度的薄板弯曲元件的性能进行了评价。通过对具有交叉板的建筑结构的热应力分析,验证了自适应网格技术与有限元法相结合的有效性。应用结果表明,自适应网格划分技术与标准有限元方法相比,能够以更少的单元和更短的计算时间提供精确的解。
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