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Turbulence Modeling of Flows with Extensive Crossflow Separation

机译:广泛横流分离的流动湍流模型

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The reasons for the difficulty in simulating accurately strong 3-D shock wave/turbulent boundary layer interactions (SBLIs) and high-alpha flows with classical turbulence models are investigated. These flows are characterized by the appearance of strong crossflow separation. In view of recent additional evidence, a previously published flow analysis, which attributes the poor performance of classical turbulence models to the observed laminarization of the separation domain, is reexamined. According to this analysis, the longitudinal vortices into which the separated boundary layer rolls up in this type of separated flow, transfer external inviscid air into the part of the separation adjacent to the wall, decreasing its turbulence. It is demonstrated that linear models based on the Boussinesq equation provide solutions of moderate accuracy, while non-linear ones and others that consider the particular structure of the flow are more efficient. Published and new Reynolds Averaged Navier–Stokes (RANS) simulations are reviewed, as well as results from a recent Large Eddy Simulation (LES) study, which indicate that in calculations characterized by sufficient accuracy the turbulent kinetic energy of the reverse flow inside the separation vortices is very low, i.e., the flow is almost laminar there.
机译:研究了用经典湍流模型难以精确模拟强3D冲击波/湍流边界层相互作用(SBLI)和高alpha流动的原因。这些流动的特点是出现强烈的错流分离。鉴于最近的其他证据,重新检查了以前发表的流量分析,该分析将经典湍流模型的不良性能归因于观察到的分离域的层化。根据该分析,分离的边界层在这种分离的流中卷入的纵向涡流将外部不粘空气转移到与壁相邻的分离部分中,从而减小了湍流。结果表明,基于Boussinesq方程的线性模型提供了中等精度的解决方案,而非线性模型和其他考虑流的特定结构的模型效率更高。审查了已发布的和新的雷诺平均纳维–斯托克斯(RANS)模拟,以及最近的大型涡模拟(LES)研究的结果,这些结果表明,在以足够的精度为特征的计算中,分离内部逆流的湍动能涡流非常低,即那里的流动几乎是层流的。

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