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3D Metric-aligned and orthogonal solution adaptive mesh generation

机译:3D度量对齐和正交解决方案自适应网格生成

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A new 3D metric-orthogonal method for metric-based anisotropic tetrahedral mesh generation is presented. The approach uses an advancing-point type point placement that aligns the elements with the underlying metric field and creates quasi-structured local topology. It is based on well-proven methodology and adds novel point-placement strategies that produce solution-adapted anisotropic meshes that are optimal in size and alignment with the solution gradients upon which the metric field is based. The overall methodology is extended to 3D from a previously developed 2D process. Results for several analytical and actual CFD simulation examples are presented that demonstrate that aligned high-quality anisotropic tetrahedral meshes which are optimal for the solution process can be reliably generated.
机译:介绍了一种新的基于度量的各向异性四面体网格产生的3D度量正交方法。 该方法使用前进点类型点放置,使元素与底层度量字段对齐,并创建准结构的本地拓扑。 它基于经过精心验证的方法,并添加了新的点放置策略,其产生溶液适应的各向异性网格,其尺寸和与度量场所基于的解决方案梯度对齐。 总体方法从先前开发的2D过程扩展到3D。 提出了几种分析和实际CFD模拟实施例的结果,其证明了可以可靠地产生对溶液过程最佳的高质量各向异性四面体网格。

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