首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >A comparative assessment within a multigrid environment of segregated pressure-based algorithms for fluid flow at all speeds
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A comparative assessment within a multigrid environment of segregated pressure-based algorithms for fluid flow at all speeds

机译:在多网格环境中基于压力的基于隔离压力的算法在所有速度下的流体流动的比较评估

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This article deals with the evaluation of six segregated high-resolution pressure-based algorithms, which extend the SIMPLE, SIMPLEC, PISO, SIMPLEX, SIMPLEST, and PRIME algorithms, originally developed for incompressible flow, to compressible flow simulations. The algorithms are implemented within a single grid, a prolongation grid, and a full multigrid method and their performance assessed by solving problems in the subsonic, transonic, supersonic, and hypersonic regimes. This study clearly demonstrates that all algorithms are capable of predicting fluid flow at all speeds and qualify as efficient smoothers in multigrid calculations. In terms of CPU efficiency, there is no global and consistent superiority of any algorithm over the others, even though PRIME and SIMPLEST are generally the most expensive for inviscid flow problems. Moreover, these two algorithms are found to be very unstable in most of the cases tested, requiring considerable upwind bleeding (up to 50%) of the high-resolution scheme to promote convergence. The most stable algorithms are SIMPLEC and SIMPLEX. Moreover, the reduction in computational effort associated with the prolongation grid method reveals the importance of initial guess in segregated solvers. The most efficient method is found to be the full multigrid method, which resulted in a convergence acceleration ratio, in comparison with the single grid method, as high as 18.4.
机译:本文介绍了六种基于高分辨率的分离压力的评估方法,这些算法将最初为不可压缩流开发的SIMPLE,SIMPLEC,PISO,SIMPLEX,SIMPLEST和PRIME算法扩展到了可压缩流模拟。该算法在单个网格,延长网格和完整的多网格方法中实现,并且通过解决亚音速,跨音速,超音速和高音速状态中的问题来评估其性能。这项研究清楚地表明,所有算法都能够预测所有速度下的流体流量,并且在多网格计算中可以作为有效的平滑器。在CPU效率方面,即使PRIME和SIMPLEST通常对于无形的流量问题来说是最昂贵的,但任何算法都没有全局和一致的优势。而且,在大多数测试情况下,发现这两种算法非常不稳定,需要高分辨率方案的大量逆流出血(高达50%)来促进收敛。最稳定的算法是SIMPLEC和SIMPLEX。此外,与延长网格方法相关联的计算工作量的减少揭示了在隔离求解器中进行初始猜测的重要性。发现最有效的方法是完全多网格方法,与单网格方法相比,该方法产生的收敛加速比高达18.4。

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