首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Analysis feature recognition and mixed-dimensional model reconstruction from finite element analysis mesh model
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Analysis feature recognition and mixed-dimensional model reconstruction from finite element analysis mesh model

机译:基于有限元分析网格模型的分析特征识别与多维模型重构

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摘要

Instead of extracting mid-surfaces from computer-aided design model, an automatic dimensional reduction approach is proposed, which simplifies the finite element analysis model into the mixed-dimensional model. The input finite element analysis model is first decomposed into a set of locally prominent cross-sections. Each prominent cross-section is digitalized as a d-dimensional point and clustered in the embedded space. By the clustered points, both long-slender and thin-wall regions are detected and recognized with the help of aspect ratio. Further the identified features are reduced into skeletons and mid-surfaces, respectively, and the elements of lower dimensionality are generated simultaneously. This dimensional reduction procedure is general and feasible. In this case, multi-resolution mesh models could be created without being transformed back into computer-aided design software, which is essential to the multidisciplinary simulation. Finally, the simplification degree tests show that the nodes and elements are largely decreased; furthermore, the proposed approach is more effective than the traditional manual method on time consuming.
机译:提出了一种自动降维方法,而不是从计算机辅助设计模型中提取中间曲面,该方法将有限元分析模型简化为混合维模型。首先将输入的有限元分析模型分解为一组局部突出的横截面。每个突出的截面都被数字化为d维点,并聚集在嵌入式空间中。通过聚类点,借助长宽比可以检测并识别出长壁区域和薄壁区域。此外,将识别出的特征分别简化为骨架和中间表面,并同时生成较低维的元素。这种降维程序是通用且可行的。在这种情况下,可以创建多分辨率网格模型,而无需将其转换回计算机辅助设计软件,这对于多学科仿真至关重要。最后,简化度测试表明节点和元素大大减少了。此外,所提出的方法在时间上比传统的手动方法更有效。

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