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GEOMETRIC SURFACE FEATURES APPLIED TO VOLUMETRIC CAE MESH MODELS

机译:几何表面特征应用于体积CAE网格型号

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摘要

In this paper, we discuss a way to extend a geometric surface feature framework known as Direct Surface Manipulation (DSM) into a volumetric mesh modeling paradigm that can be directly adopted by large-scale CAE applications involving models made of volumetric elements, multiple layers of surface elements or both. By introducing a polynomial-based depth-blending function, we extend the classic DSM mathematics into a volumetric form. The depth-blending function possesses similar user-friendly features as DSM basis functions permitting ease-of-control of the continuity and magnitude of deformation along the depth of deformation. Practical issues concerning the implementation of this technique are discussed in details and implementation results are shown demonstrating the versatility of this volumetric paradigm for direct modeling of complex CAE mesh models. In addition, the notion of a model-independent, volumetric-geometric feature is introduced. Motivated by modeling clay with sweeps and templates, a model-independent, catalog-able volumetric feature can be created. Deformation created by such a feature can be relocated, reoriented, duplicated, mirrored, pasted, and stored independent of the model to which it was originally applied. It can serve as a design template, thereby saving the time and effort to recreate it for repeated uses on different models (frequently seen in CAE-based Design of Experiments study).
机译:在本文中,我们讨论了一种延伸称为直接表面操作(DSM)的几何表面特征框架的方法,进入容积网格建模范式,该范式可以通过涉及由体积元素组成的模型,多层的大规模CAE应用直接采用表面元素或两者。通过引入基于多项式的深度混合函数,我们将经典DSM数学扩展为体积形式。深度混合功能具有与DSM基函数相似的用户友好功能,允许易于控制沿着变形深度变形的连续性和大小。详细讨论了关于该技术实现的实际问题,并显示了实现结果的实施结果,证明了这种体积范例的多功能性,用于复杂CAE网模型的直接建模。另外,介绍了模型无关的体积几何特征的概念。通过使用扫描和模板建模粘土,可以创建模型独立于模型的编目容量功能的动机。通过这种特征创建的变形可以重新定位,重新定向,重复,镜像,粘贴和存储独立于其最初应用的模型。它可以用作设计模板,从而节省了在不同模型上重复使用的时间和精力(在基于CAE的实验研究中经常看到)。

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