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A NOVEL HYPERBOLIC GRID GENERATION PROCEDURE WITH INHERENT ADAPTIVE DISSIPATION

机译:具有固有自适应耗散的新型双曲线网格生成过程

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This paper reports a novel hyperbolic grid-generation with an inherent adaptive dissipation (HGAD), which is capable of improving the oscillation and overlapping of grid lines. In the present work upwinding differencing is applied to discretize the hyperbolic system and, thereby, to develop the adaptive dissipation coefficient. Complex configurations with the features of geometric discontinuity, exceptional concavity and convexity are used as the test cases for comparison of the present HGAD procedure with the conventional hyperbolic and elliptic ones. The results reveal that the HGAD method is superior in orthogonality and smoothness of the grid system. In addition, the computational efficiency of the flow solver may be improved by using the present HGAD procedure. (C) 1995 Academic Press, Inc. [References: 15]
机译:本文报道了一种新颖的具有固有自适应耗散(HGAD)的双曲线网格生成方法,该方法能够改善网格线的振荡和重叠。在当前的工作中,迎风微分被应用来离散双曲系统,从而发展自适应耗散系数。具有几何不连续性,出色的凹凸性和凸度特征的复杂配置被用作测试例,用于将当前的HGAD程序与传统的双曲线和椭圆形程序进行比较。结果表明,HGAD方法在网格系统的正交性和平滑性方面具有优势。另外,通过使用当前的HGAD过程,可以提高流量求解器的计算效率。 (C)1995 Academic Press,Inc. [参考:15]

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