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Computational investigation of cavity flow control using a passive device

机译:使用无源设备进行腔室流量控制的计算研究

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摘要

In this paper, the results of computational studies on the unsteady flow features in threedimensional empty cavities and cavities with a representative store are presented. Flow simulations with a turbulence model based on a hybrid method, which behaves as a standard Reynolds-averaged Navier-Stokes (RANS) model within the attached boundary layer and as a Large-Eddy Simulation LES Sub-Grid Scale model in the rest of the flow (commonly known as Detached-Eddy Simulation [DES]) are used in this study. The time-mean flow study showed the presence of three-dimensional effects inside the cavities. The mean flowfield visualisation also clearly showed the presence of a pair of 'tornado-like' vortices in the upstream half of the cavity which merge to a single, large recirculation further downstream. Visualisation for the cavity-with-store case revealed that the mean flowfield was effectively divided into two halves with signifiant reduction of the spanwise flow across the cavity width. In the unsteady flow study, near-field acoustic spectra were computed for the empty cavity and cavity-with-store cases. Study of unsteady pressure spectra for the cavitywith- store case found the presence of many peaks and the corresponding mode frequencies were found to agree well with the Rossiter modes. The blockage effect of store and strut on the spanwise flow is thought to have reduced the interaction, and subsequent non-linear coupling, between the Rossiter modes. This may be the reason for the co-existence of multiple modes without the coupling among them.
机译:本文介绍了三维空洞和具有代表性存储的洞中非定常流动特征的计算研究结果。使用基于混合方法的湍流模型进行流动模拟,在附加边界层内表现为标准的雷诺平均Navier-Stokes(RANS)模型,而在其余部分中表现为大涡模拟LES子网格比例模型在这项研究中使用了流动(通常称为分离涡模拟[DES])。时均流量研究表明,空腔内部存在三维效应。平均流场可视化也清楚地表明,在腔体的上游一半中存在一对“龙卷风状”涡流,这些涡流合并为更下游的单个大型再循环。带有存储腔的情况的可视化显示,平均流场被有效地分为两半,跨腔宽度的翼展方向流量显着减小。在非恒定流研究中,针对空腔和带存储腔的情况计算了近场声谱。对具有储能腔的非稳态压力谱的研究发现,存在许多峰值,并且发现相应的模频率与Rossiter模非常吻合。储存和支柱对翼展方向流动的阻塞作用被认为减少了Rossiter模式之间的相互作用以及随后的非线性耦合。这可能是多个模式不存在耦合的原因。

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