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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Air-driven viscous film flow coating the interior of a vertical tube
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Air-driven viscous film flow coating the interior of a vertical tube

机译:APS-APS流体动力学分部第70届年会-活动-空气驱动的粘性薄膜流动覆盖垂直管的内部

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We discuss a model for the flow of a viscous liquid film coating the interior of a vertical tube when the film is driven upwards against gravity by airflow through the center of the tube. The model consists of two components: (i) a nonlinear model, exploiting the slowly-varying liquid-air interface, for the interfacial stresses created by the airflow, and (ii) a long-wave asymptotic model for the air-liquid interface. The stability of small interfacial disturbances is studied analytically, and it is shown that the modeled free surface stresses contribute to both an increased upwards disturbance velocity and a more rapid instability growth than those of a previously developed model. Numerical solutions to the long-wave model exhibit saturated waves whose profiles and velocities show improvement, with respect to the previous model, in matching experiments. The model results are then compared with additional experiments for a slightly modified version of the problem.
机译:我们讨论了一种模型,该模型用于通过流经管中心的气流克服重力而向上驱动垂直管内部的粘性液体膜。该模型由两个部分组成:(i)利用缓慢变化的液-气界面的非线性模型,以解决由气流产生的界面应力;以及(ii)气-液界面的长波渐近模型。通过分析研究了较小的界面扰动的稳定性,结果表明,与以前开发的模型相比,建模的自由表面应力既有助于增加扰动速度,又使不稳定性快速增长。在匹配实验中,长波模型的数值解显示了饱和波,其饱和度和速度相对于以前的模型有所改善。然后将模型结果与该问题的稍作修改的版本的其他实验进行比较。

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