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Flow modulation of a planar free shear layer with large bubbles—direct numerical simulations

机译:大气泡直接数值模拟的平面自由剪切层的流量调制

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摘要

The flow of a planar free shear layer with cylindrical bubbles is simulated using a finite difference/front tracking scheme. This approach allows direct numerical simulation of the multiphase flow by wholly incorporating the local bubble flow field in conjunction with the large scale vortical structures of the liquid. The role of large bubbles in modifying low Reynolds number (~ 250) shear flow structures is investigated, specifically for bubbles whose diameter approaches the scale of the largest liquid eddies. The results indicate that duration of eddy crossing is the main mechanism for flow modulation, which is typically characterized by decreased vortex coherency and size, modified fluctuation statistics and significant variations in pairing/merging phenomena. The comparison of fluctuating statistics and flow field visualization also allowed qualitative discrimination between the modulation of the non-linear eddy dynamics and fluctuations due simply to the random bubble induced perturbations.
机译:使用有限差分/前跟踪方案模拟具有圆柱气泡的平面自由剪切层的流动。这种方法允许通过结合液体的大规模涡流结构,直接掺入局部气泡流场的直接数值模拟。研究了大气泡在改变低雷诺数(〜250)剪切流动结构中的作用,专门用于直径接近最大液体漩涡的规模的气泡。结果表明,涡流交叉的持续时间是流量调制的主要机制,其通常通过降低涡旋相干性和大小,修改波动统计和配对/合并现象的显着变化。波动统计和流场可视化的比较也允许在非线性涡流动力学的调制之间进行定性辨别,并且由于随机泡沫诱导的扰动而受到的波动。

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