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An improved bubble packing method for unstructured grid generation with application to computational fluid dynamics

机译:一种用于非结构化网格生成的改进气泡填充方法及其在计算流体动力学中的应用

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摘要

An improved bubble packing method (BPM) is proposed to generate high-quality unstructured grids for prediction of the flow field in a domain with complex geometry. For a curved-boundary domain, bubble departure from the curved boundaries during the dynamic movement of bubbles can be avoided by using the mapping and the arc-length parameterization methods. Furthermore, the grid density of the whole region can be controlled effectively. Local mesh refinement is achieved by adding bubbles with different sizes to the real and artificial vertices of the domain, and vertex information is transferred to the inner nodes of the domain using the Shepard interpolation method. In order to validate the proposed BPM, a finite-volume solver on an unstructured collocated grid is developed to simulate both square and polar lid-driven cavity flows. The numerical simulation results agree well with the experimental data under different Reynolds numbers.
机译:提出了一种改进的气泡填充方法(BPM)来生成高质量的非结构化网格,以预测具有复杂几何形状的域中的流场。对于弯曲边界域,可以通过使用映射和弧长参数化方法避免气泡在动态运动过程中从弯曲边界离开。此外,可以有效地控制整个区域的网格密度。通过将不同大小的气泡添加到域的真实和人工顶点来实现局部网格细化,并使用Shepard插值方法将顶点信息传递到域的内部节点。为了验证所提出的BPM,开发了一种在非结构化并置网格上的有限体积求解器,以模拟正方形和极性盖驱动的腔体流动。数值模拟结果与不同雷诺数下的实验数据吻合良好。

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