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首页> 外文期刊>Journal of Fluid Mechanics >Large-eddy simulations of a round jet in crossflow
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Large-eddy simulations of a round jet in crossflow

机译:横流中圆形射流的大涡模拟

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This paper reports on a series of large-eddy simulations of a round jet issuing normally into a crossflow. Simulations were performed at two jet-to-crossflow velocity ratios, 2.0 and 3.3, and two Reynolds numbers, 1050 and 2100, based on crossflow velocity and jet diameter. Mean and turbulent statistics computed from the simulations match experimental measurements reasonably well. Large-scale coherent structures observed in experimental flow visualizations are reproduced by the simulations, and the mechanisms by which these structures form are described. The effects of coherent structures upon the evolution of mean velocities, resolved Reynolds stresses, and turbulent kinetic energy along the centreplane are discussed. In this paper, the ubiquitous far-field counter-rotating vortex pair is shown to originate from a pair of quasi-steady 'hanging' vortices. These vortices form in the skewed mixing layer that develops between jet and crossflow fluid on the lateral edges of the jet. Axial flow through the hanging vortex transports vortical fluid from the near-wall boundary layer of the incoming pipe flow to the back side of the jet. There, the hanging vortex encounters an adverse pressure gradient and breaks down. As this breakdown occurs, the vortex diameter expands dramatically, and a weak counter-rotating vortex pair is formed that is aligned with the jet trajectory.
机译:本文报道了一系列大涡流模拟,这些模拟通常是向横流喷射的圆形射流。基于横流速度和射流直径,以两个射流与横流速度比2.0和3.3以及两个雷诺数1050和2100进行了模拟。通过模拟计算得出的均值和湍流统计数据与实验测量值相当吻合。通过模拟再现了在实验流可视化中观察到的大规模相干结构,并描述了形成这些结构的机制。讨论了相干结构对沿中心平面的平均速度,分解的雷诺应力和湍动能的影响。在本文中,普遍存在的远场反向旋转涡流对显示为源自一对准稳态“悬挂”涡流。这些涡流在偏斜的混合层中形成,该偏斜的混合层在射流和射流侧边缘上的横流流体之间形成。通过悬挂涡流的轴向流将涡流流体从进入的管道流的近壁边界层传输到射流的背面。在那里,悬挂的涡流遇到不利的压力梯度并破裂。随着这种破坏的发生,涡旋直径急剧扩大,并形成了一个与射流轨迹对准的弱的反向旋转涡旋对。

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