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MODELING ARTIFICIAL SECONDARY INSTABILITY OF THIN WAVY GAS-SHEARED LIQUID FILM

机译:建模薄波浪气管液膜的人工二次不稳定性

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摘要

The surface of a liquid film under strong gas shear is covered by waves of different types and scales interacting with each other. This is true for film flows both with and without liquid entrainment. The most common type of such interaction is the generation of slow short-livingwaves at the rear slopes of fast large-amplitude long-living waves. These waves are referred to as secondary and primary, respectively. In the present work, we model the process of generation of secondary waves due to strong localized agitation of film surface at different locations with respect to the phase of primary waves. In real flow, such events are expected to occur due to large-scale turbulent pulsations in the gas phase. It was found that, for stabilized flow with stationary nonlinear waves, the inception of such perturbation leads to the formation and growth of a secondary wave with spatiotemporal behavior similar to that observed in the experiments. This is true for the base film and the lower half of the rear slope of a primary wave. At the crest and front parts of primary waves, the perturbations decay quickly. The same regularities are observed in the experiments.
机译:较强的气体剪切液下的液膜表面被不同类型的波和尺度相互作用的波覆盖。对于有和没有液体夹带的薄膜流动是正确的。这种相互作用的最常见类型是在快速大振幅长长波的后坡上产生慢速短livingwaves。这些波分别称为次要和主要。在目前的工作中,我们建模了由于主要波相对于不同位置的膜表面强烈的局部搅动而产生的二次波的过程。在实际流动中,由于气相中的大规模湍流脉动,预计此类事件将发生。已经发现,对于具有固定非线性波的稳定流量,这种扰动的创造导致具有时空行为的次级波的形成和生长,类似于实验中观察到的行为。对于基本膜和主波后坡的下半部分是正确的。在主要波浪的波峰和前部,扰动迅速衰减。在实验中观察到相同的规律性。

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