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首页> 外文期刊>International Journal of Multiphase Flow >Surface morphology reconstruction of free falling films at high Reynolds numbers
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Surface morphology reconstruction of free falling films at high Reynolds numbers

机译:高雷诺数下自由落体膜的表面形态重建

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摘要

A novel theoretical treatment is presented for simulating the shape of the wavy surface of thin liquid falling films, flowing freely inside a vertical pipe. The simulation proved particularly successful for the range ~800 ≤ Re ≤~5000. This is a regime where each one of the film main elements––roll waves, ripples, capillary waves and substrate––can be effectively used to adjust a different statistical characteristic of the film. The geometrical profile of all types of waves is simulated fairly well by a log-normal function with its parameters related to specific wave features. The Gaussian fashion of selecting the wave parameters from specific ranges of values and the subsequent random deposition of the produced waves over the film substrate attests the stochastic nature of falling films. The performance of the code routine is satisfactory producing considerably good reconstructions of the film surface shape for all the data sets used to assess its accuracy. The potential for appraising several obscure features of falling films by matching the experimental and theoretical results is discussed.
机译:提出了一种新颖的理论方法,用于模拟在垂直管内自由流动的薄液体降膜的波浪形表面的形状。在〜800≤Re≤〜5000的范围内,仿真特别成功。在这种情况下,可以有效地使用胶片的每个主要元素-卷波,波纹,毛细波和基材-来调整胶片的不同统计特性。通过对数正态函数及其参数与特定波浪特征相关的参数,可以很好地模拟所有类型的波浪的几何轮廓。从特定的数值范围中选择波参数的高斯方式,以及随后产生的波在薄膜基材上的随机沉积,证明了降膜的随机性。对于用于评估其准确性的所有数据集,代码例程的性能令人满意,可对薄膜表面形状产生相当好的重构。讨论了通过匹配实验和理论结果来评估降膜的几个晦涩特征的潜力。

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