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High-Order Unstructured Spectral Finite Volume Scheme for Aerodynamic Applications

机译:用于空气动力学应用的高阶非结构化光谱有限体积方案

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The present work implements the spectral finite volume scheme in a cell centered finite volume context for unstructured meshes. The 2-D Euler equations are considered to represent the flows of interest. The spatial discretization scheme is developed to achieve high resolution and computational efficiency for flow problems governed by hyperbolic conservation laws, including flow discontinuities. Such discontinuities are mainly shock waves in the aerodynamic studies of interest in the present paper. The entire reconstruction process is described in detail for the 2nd to 4th order schemes. Roe's flux difference splitting method is used as the numerical Riemann solver. Several applications are performed in order to assess the method capability compared to data available in the literature. The results obtained with the present method are also compared to those of essentially non-oscillatory and weighted essentially non-oscillatory high-order schemes. There is good agreement with the comparison data and efficiency improvements have been observed.
机译:本工作实现了用于非结构化网格的细胞中心有限体积上下文中的光谱有限卷方案。 2-D欧拉方程被认为代表感兴趣的流动。开发了空间离散化方案,以实现由双曲保守法管辖的流量问题的高分辨率和计算效率,包括流动不连续性。这种不连续性主要是对本文兴趣的空气动力学研究中的冲击波。对于第2个至第四阶方案,详细描述了整个重建过程。 ROE的助熔剂分裂方法用作数值riemann求解器。进行了几个应用程序以评估与文献中可用的数据相比的方法能力。使用本方法获得的结果也与基本上非振荡的和加权基本上非振荡高阶方案的结果进行了比较。与比较数据有良好的一致性,并观察到效率改进。

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