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Geometric processing for analysis

机译:几何处理以供分析

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Processing geometric models for finite element analysis is a major factor in the time required to develop and optimise a design. Efficient analysis may require simplification of the geometric model by dimensional reduction (replacing thin sheets or slender bars of material with equivalent line or surface elements) or detail suppression (the removal of small features below the scale of interest in the analysis). There are many situations where detailed local models of full dimension could be combined with global models containing reduced dimensional elements, or in which the abstract models used in preliminary design could be used to generate an initial version of the 3D solid model. Furthermore, the most appropriate representation of an object is dependent on the analysis type. These requirements provide significant challenges for future generations of CAE software in feature recognition and the modelling and representation of geometric objects.
机译:处理用于有限元分析的几何模型是开发和优化设计所需时间的主要因素。要进行有效的分析,可能需要通过减小尺寸(用等效的线或面元素替换材料的薄片或细长条)或抑制细节(去除分析中感兴趣的尺度以下的小特征)来简化几何模型。在很多情况下,可以将详细的完整局部模型与包含缩减维度元素的全局模型结合起来,或者在初步设计中使用抽象模型来生成3D实体模型的初始版本。此外,对象的最合适表示形式取决于分析类型。这些要求对于下一代CAE软件在特征识别以及几何对象的建模和表示方面提出了重大挑战。

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