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Interfacial waves on sheared, thin liquid films.

机译:剪切的薄液膜上的界面波。

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摘要

Measurements of waves on thin liquid films sheared by a turbulent gas flow are made in a horizontal rectangular channel of high aspect ratio. The effect of flow conditions on both well-developed and evolving wave fields is examined for glycerin-water solutions in the range of 8-30 cP. Observed transitions in wave type are found to depend largely on gas shear, and its effect on various wave properties is examined. The evolution and interaction of waves at flow conditions close to and moderately removed from neutral stability are then examined; spectral analysis of the measured surface height time series is used to determine the frequency distribution, speeds and phase coherence of waves. Bicoherence spectra reveal that thin film waves transfer energy both upward and downward in frequency. Downward transfer results from quadratic difference interactions between the fundamental and higher frequency modes, the most dramatic example being formation of a subharmonic wave on the lower viscosity films (;A nonlinear wave equation, valid for liquid Reynolds numbers of O(1 to 100) is derived to describe and predict the properties of thin film waves. The equation reveals the presence of both kinematic and dynamic disturbances which may (i) act together; or (ii) singularly dominate the wave field. Parameter ranges for the dominant behavior are determined from linear stability analysis of the equation and its reduced forms. Amplitude equations are integrated to predict evolution of finite amplitude waves at conditions which match experimental measurements, and qualitative agreement is obtained with the data. The simulations suggest that the low frequency disturbance observed experimentally results from difference interactions among the dominant waves. Examination of the equation suggests that the ability to transfer energy downward in frequency is related to the complex coupling coefficients present in the amplitude equations.
机译:在具有高纵横比的水平矩形通道中,对在湍流气流作用下剪切的液体薄膜上的波进行了测量。对于甘油水溶液在8-30 cP范围内,检查了流动条件对发达波场和不断发展的波场的影响。发现波型的观察到的过渡很大程度上取决于气体剪切,并检查了其对各种波特性的影响。然后研究了在接近中性稳定性并从中性稳定性中略微消除的流动条件下,波浪的演化和相互作用。测得的表面高度时间序列的频谱分析用于确定波的频率分布,速度和相位相干性。双相干光谱表明,薄膜波在频率上向上和向下传递能量。向下传递是由基频模式和较高频率模式之间的二次差分相互作用引起的,最典型的例子是在较低粘度的膜上形成亚谐波波(;一个非线性波动方程,对O(1至100)的液体雷诺数有效。该方程揭示了运动和动态扰动的存在,它们可能(i)共同作用;或(ii)奇异地控制波场,主导行为的参数范围由对该方程及其简化形式进行线性稳定性分析,并结合振幅方程来预测在与实验测量值相匹配的条件下有限振幅波的演化,并与数据获得定性一致性,模拟结果表明,实验观察到的低频干扰来自的主波之间的差相互作用。方程式的检验认为能量向下传播的能力与振幅方程中存在的复数耦合系数有关。

著录项

  • 作者

    Jurman, Lorraine Ann.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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