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Techniques for Unstructured Mesh Adaptation with Elliptic Smoothing

机译:椭圆平滑的非结构化网格自适应技术

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A new mesh adaptation method for unstructured grids is presented. The technique uses virtual control volumes that are iteratively manipulated to conform the mesh to match either a Riemannian metric tensor field or an equal distribution of scalar weights. Forcing functions similar to those used for structured grids are employed such that the resulting meshes can be compared with those generated using the new adaptation method. Several test cases using analytic functions to drive the mesh adaptation are presented and compared with the new method. Mesh adaptation results driven by solution data are also compared to those adapted using analytical functions, as well as those adapted using the virtual control volume approach. Strengths and weaknesses of the various adaptation methods are investigated, and suggestions for further research are discussed.
机译:提出了一种新的非结构化网格自适应方法。该技术使用了迭代控制的虚拟控制体积,以使其符合网格以匹配Riemannian度量张量场或标量权重的相等分布。使用与用于结构化网格的强制功能相似的强制功能,以便可以将所得的网格与使用新的适应方法生成的网格进行比较。提出了几种使用解析函数来驱动网格自适应的测试案例,并将其与新方法进行了比较。由解决方案数据驱动的网格自适应结果也将与使用分析功能以及虚拟控制体积方法自适应的结果进行比较。研究了各种适应方法的优缺点,并讨论了进一步研究的建议。

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