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Automatic structured mesh generation around two-dimensional bodies defined by polylines or PolyC1 curves

机译:自动围绕折线或PolyC1曲线定义的二维实体生成结构化网格

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The need for automatic mesh generation techniques in Computational Fluid Dynamics is widely recognized. The decomposition of the computational domain into off-body Cartesian regions and near-body regions has proven to be a robust approach. This paper investigates a method to generate automatically structured near-body grids around two-dimensional bodies for CFD simulations. This method enables to avoid poor-quality meshes for locally sharp bodies, such as the trailing edge of an airfoil and is able to perform automatically flow simulation around any geometry made of polylines or polyC1 curves. The method is validated on the laminar flow simulation past a rectangle with a cavity, and then on the RANS flow simulation past a RAE2822 airfoil. Solutions are compared to reference solutions obtained with classical multiblock meshes. Finally, this technique is applied on the RANS flow simulation past a three-element airfoil, showing the robustness of the present method to generate automatically a mesh around a complex configuration.
机译:计算流体力学中对自动网格生成技术的需求已得到广泛认可。已经证明将计算域分解为体外笛卡尔区域和近体区域是一种可靠的方法。本文研究了一种用于在CFD模拟中围绕二维物体生成自动结构化的近身网格的方法。此方法可以避免局部尖锐物体(例如,机翼的后缘)的劣质网格,并能够围绕由折线或polyC1曲线构成的任何几何形状自动执行流动仿真。该方法在经过带有空腔的矩形的层流模拟中经过验证,然后在经过RAE2822翼型的RANS流动模拟中得到验证。将解决方案与通过经典多块网格获得的参考解决方案进行比较。最后,将该技术应用于经过三要素翼型的RANS流动模拟,显示了本方法在复杂配置周围自动生成网格的鲁棒性。

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