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Convergence of Defect-Correction and Multigrid Iterations for Inviscid Flows

机译:粘性流的缺陷校正和多重网格迭代的收敛性

摘要

Convergence of multigrid and defect-correction iterations is comprehensively studied within different incompressible and compressible inviscid regimes on high-density grids. Good smoothing properties of the defect-correction relaxation have been shown using both a modified Fourier analysis and a more general idealized-coarse-grid analysis. Single-grid defect correction alone has some slowly converging iterations on grids of medium density. The convergence is especially slow for near-sonic flows and for very low compressible Mach numbers. Additionally, the fast asymptotic convergence seen on medium density grids deteriorates on high-density grids. Certain downstream-boundary modes are very slowly damped on high-density grids. Multigrid scheme accelerates convergence of the slow defect-correction iterations to the extent determined by the coarse-grid correction. The two-level asymptotic convergence rates are stable and significantly below one in most of the regions but slow convergence is noted for near-sonic and very low-Mach compressible flows. Multigrid solver has been applied to the NACA 0012 airfoil and to different flow regimes, such as near-tangency and stagnation. Certain convergence difficulties have been encountered within stagnation regions. Nonetheless, for the airfoil flow, with a sharp trailing-edge, residuals were fast converging for a subcritical flow on a sequence of grids. For supercritical flow, residuals converged slower on some intermediate grids than on the finest grid or the two coarsest grids.
机译:在高密度网格上的不同不可压缩和可压缩无粘性范围内,对多重网格和缺陷校正迭代的收敛性进行了综合研究。使用改进的傅立叶分析和更通用的理想化粗网格分析都显示出了缺陷校正松弛的良好平滑特性。单网格缺陷校正本身在中等密度的网格上有一些缓慢收敛的迭代。对于近音速流和非常低的可压缩马赫数,收敛特别慢。另外,在中密度网格上看到的快速渐近收敛在高密度网格上恶化。在高密度网格上,某些下游边界模式会非常缓慢地衰减。多网格方案将缓慢的缺陷校正迭代的收敛速度提高到了由粗网格校正确定的程度。在大多数地区,两级渐近收敛速度是稳定的并且明显低于一,但是对于近音速和马赫数很低的可压缩流来说,收敛速度很慢。多重网格求解器已应用于NACA 0012机翼和不同的流态,例如接近相切和停滞。在停滞区域内已经遇到了某些收敛困难。尽管如此,对于具有锋利后缘的翼型流,残差在一系列格栅上快速收敛为亚临界流。对于超临界流,残差在某些中间网格上的收敛速度要比最细网格或两个最粗糙的网格慢。

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