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Symmetry-based decomposition for meshing quasi-axisymmetric components

机译:基于对称性的准轴对称组件的分解

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Quasi-axisymmetric structural components are very common in any mechanical equipment containing rotating components, such as turbo machinery. Identifying and exploiting symmetric properties in these components is key to simplify the creation of FE volume meshes. In this paper, a novel approach is proposed to detect exact cyclic symmetries, in order to decompose a quasi-axisymmetric CAD component for FEA. Starting from a B-Rep CAD model, axisymmetric and cyclic repeated sectors are automatically identified to generate a subdivided representation, which can then be used to produce a good quality mesh. Using this new component structure, the resulting decomposition produces a reduced number of mesh-able sub-domains. Symmetry properties can then be inferred to generate the full component mesh from meshes on the individual sub-domains. The approach shows a major reduction of the geometry to be meshed leading to less manual intervention from the user.
机译:拟轴对称结构部件在包含旋转部件的任何机械设备中非常常见,例如涡轮机械。 在这些组件中识别和利用对称属性是简化FE卷网格的键。 在本文中,提出了一种新的方法来检测精确的循环对称性,以便分解用于FEA的准轴对称CAD分量。 从B-REP CAD模型开始,自动识别轴对称和循环重复扇区以生成细分表示,然后可以用于产生良好的质量网格。 使用该新组件结构,所产生的分解产生减少数量的网格的子域。 然后可以推断对称性属性以从各个子域上的网格生成完整组件网格。 该方法示出了待网格的主要减小,导致用户的手动干预较少。

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