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Filtered velocity based LES of mixing in high speed recirculating shear flow

机译:高速再循环剪切流中基于过滤速度的混合LES

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Development of efficient hypersonic air-breathing propulsion system requires understanding the mixing of fuel in a supersonic flow. Experiments~(1-3) at the S~3L facility in Caltech investigate fundamental mixing of fuel with supersonic gas stream in an expansion-ramp configuration. The flow is turbulent and exhibits spatio-temporal pressure and density variations due to compressibility and heat release. The present work aims to develop and study subgrid-scale models for simulating the flow in the experiment. In particular, we focus on incorporating the baroclinic (pertaining to pressure-gradient and density) and dilatational effects at subgrid-scales. These subgrid-scale effects cannot be directly represented in conventional density-filtered LES formulation using algebraic models available in the literature. We develop and a new concise filtered-velocity based LES formulation and simulate a specific flow-case studied in the experiments. A posteriori observations of the proposed formulation are reported on two-dimensional and three-dimensional simulations. The effect on key flow statistics is discussed.
机译:开发高效的超音速空气推进系统需要了解超音速流中燃料的混合情况。加州理工学院S〜3L设施的实验(1-3)研究了膨胀斜坡配置中燃料与超音速气流的基本混合。流动是湍流的,并且由于可压缩性和热量释放而表现出时空压力和密度变化。本工作旨在开发和研究亚网格规模的模型,以模拟实验中的流动。特别是,我们专注于在亚网格尺度上合并斜压(与压力梯度和密度有关)和膨胀效应。这些亚网格规模的影响无法使用文献中提供的代数模型在常规的密度过滤LES公式中直接表示。我们开发了一种新的基于LES的简明滤波速度,并模拟了在实验中研究的特定流态。在二维和三维模拟中报告了所提议的配方的后验观察结果。讨论了对密钥流统计的影响。

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