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Large Eddy Simulation of Separated Flow over a Two-dimensional Hump with and without Control by Means of a Synthetic Slot-jet

机译:二维驼峰分离流的大涡模拟,带有和不带有合成槽式喷射的控制

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摘要

Large Eddy Simulations for two flows separating from a two-dimensional hump in a duct are reported and discussed. The flows differ through the presence or absence of a synthetic slot-jet injected in a sinusoidal manner, i.e. at zero net mass-flow rate, close to the location of separation and intended to reduce (“control”) the extent of the separated region. Results reported include instantaneous visualisations, pre-multiplied spectra, wall-pressure distributions, streamfunction fields and profiles of velocity and second moments. For both flows, agreement between the simulations and the experimental results is generally good, especially in respect of the overall control effectiveness of the synthetic jet, despite the use of an approximate wall treatment bridging the viscous sublayer. Proper Orthogonal Decomposition of the velocity field is used to study structural features, and this shows that the most energetic mode in the base flow is representative of large streamwise vortices in the separated region, while in the controlled flow, most of the energetically dominant modes are associated with large spanwise vortices.
机译:报告并讨论了从管道中二维驼峰分离出来的两个流动的大涡模拟。流量的不同之处在于是否存在以正弦波方式注入的合成狭缝喷嘴,即以零净质量流量,接近分离位置并旨在减少(“控制”)分离区域的范围。报告的结果包括瞬时可视化,预乘谱,壁压分布,流函数场以及速度和第二矩的分布图。对于这两种流动,尽管使用了近似的壁处理来弥合粘性子层,但仿真和实验结果之间的一致性通常都很好,特别是在合成射流的总体控制效果方面。使用速度场的适当正交分解来研究结构特征,这表明基本流中最有能量的模式代表了分离区域中大的水流涡流,而在受控流中,大多数的能量主导模式是与大跨度涡旋有关。

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