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General Pressure-Correction Strategy to Include Density Variation in Incompressible Algorithms

机译:在不可压缩算法中包括密度变化的常规压力校正策略

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This work deals with the popular topic of extending incompressible numerical formulations to the compressible or variable density regime. Based on an analogy between the incompressible and compressible governing equations, a general strategy is suitably developed to facilitate the compressible flow solution through using incompressible algorithms. It is shown that the implementation of the extended strategy to an arbitrarily incompressible algorithm requires two minor modifications in the original algorithm. In fact, two on/off switches suffice to implement the two required modifications. Switch one includes the compressible source terms to the momentum governing equations. Switch two decides how to calculate the unknown density field as a secondary dependent variable of the algorithm. In this work the two modifications are employed in a popular incompressible algorithm, which utilizes semi-implicit method with pressure-linked equation. However, one important advantage of the extended strategy is its robust applicability to the other constant density algorithms as well. The strategy is examined by testing a number of test cases at various Mach and Reynolds numbers. Results are presented for driven-cavity flow, flow over a backward-facing step, flow through a channel, and inviscid flow through a converging-diverging nozzle. The study shows that the modified algorithm exhibits similar performance for both constant and variable density regimes.
机译:这项工作涉及将不可压缩的数值公式扩展到可压缩或可变密度方案的流行主题。基于不可压缩和可压缩控制方程之间的类比,适当地开发了一种通用策略,以通过使用不可压缩算法来促进可压缩流解。结果表明,将扩展策略实施为任意不可压缩算法时,需要对原始算法进行两个较小的修改。实际上,两个开/关开关足以实现两个所需的修改。开关一将可压缩源项包括到动量控制方程中。开关2决定如何计算未知密度场作为算法的次要因变量。在这项工作中,这两种修改方法在一种流行的不可压缩算法中得到了应用,该算法利用带有压力链接方程的半隐式方法。但是,扩展策略的一个重要优点是其对其他恒定密度算法的强大适用性。通过以各种马赫数和雷诺数测试多个测试用例来检验该策略。给出了驱动腔流量,向后步骤的流量,通过通道的流量以及通过会聚-发散喷嘴的不粘流量的结果。研究表明,改进的算法在恒定和可变密度方案下均表现出相似的性能。

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