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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Dual Representation Methods for Efficient and Automatable Analysis of 3D Plates
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Dual Representation Methods for Efficient and Automatable Analysis of 3D Plates

机译:对3D板进行高效和自动化分析的双重表示方法

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摘要

It is well recognized that 3D finite element analysis is inappropriate for analyzing thin structures such as plates and shells. Instead, a variety of highly efficient and specialized 2D methods have been developed for analyzing such structures. However, 2D methods pose serious automation challenges in today's 3D design environment. Specifically, analysts must manually extract cross-sectional properties from a 3D computer aided design (CAD) model and import them into a 2D environment for analysis. In this paper, we propose two efficient yet easily automatable dual representation methods for analyzing thin plates. The first method exploits standard off-the-shelf 3D finite element packages and achieves high computational efficiency through an algebraic reduction process. In the reduction process, a 3D plate bending stiffness matrix is constructed from a 3D mesh and then projected onto a lower-dimensional space by appealing to standard 2D plate theories. In the second method, the analysis is carried out by integrating 2D shape functions over the boundary of the 3D plate. Both methods do not entail extraction of the cross-sectional properties of the plate. However, the user must identify the plate or thickness direction. The proposed methodologies are substantiated through numerical experiments.
机译:众所周知,3D有限元分析不适用于分析薄结构,例如板和壳。取而代之的是,已经开发了多种高效且专门的2D方法来分析此类结构。但是,在当今的3D设计环境中,二维方法提出了严峻的自动化挑战。具体来说,分析人员必须从3D计算机辅助设计(CAD)模型中手动提取横截面特性,并将其导入2D环境中进行分析。在本文中,我们提出了两种有效但易于自动化的双重表示方法来分析薄板。第一种方法利用标准的现成3D有限元软件包,并通过代数约简过程实现了高计算效率。在缩小过程中,由3D网格构造3D板弯曲刚度矩阵,然后通过引用标准2D板理论将其投影到低维空间上。在第二种方法中,分析是通过在3D板的边界上整合2D形状函数进行的。两种方法都不需要提取板的横截面特性。但是,用户必须确定板材或厚度方向。通过数值实验证实了所提出的方法。

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