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Measurement of liquid film thickness in a micro parallel channel with interferometer and laser focus displacement meter

机译:用干涉仪和激光聚焦位移仪测量微平行通道中的液膜厚度

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摘要

In the present study, liquid film thicknesses in parallel channels with heights of H=0.1, 0.3 and 0.5mm are measured with two different optical methods, i.e., interferometer and laser focus displacement meter. Ethanol is used as a working fluid. Liquid film thicknesses obtained from two optical methods agree very well. At low capillary numbers, dimensionless liquid film thickness is in accordance with Taylor's law. However, as capillary number increases, dimensionless liquid film thickness becomes larger than Taylor's law for larger channel heights. It is attributed to the dominant inertial effect at high capillary numbers. Using channel height H for dimensionless liquid film thickness δ_0/H and hydraulic diameter D_h=2H as the characteristic length for Reynolds and Weber numbers, liquid film thickness in a parallel channel can be predicted well by the circular tube correlation previously proposed by the authors. This is because curvature differences between bubble nose and flat film region are identical in circular tubes and parallel channels.
机译:在本研究中,采用两种不同的光学方法,即干涉仪和激光聚焦位移仪,测量了平行通道中高度分别为H = 0.1、0.3和0.5mm的液膜厚度。乙醇用作工作流体。通过两种光学方法获得的液膜厚度非常吻合。在低毛细管数下,无量纲的液膜厚度符合泰勒定律。然而,随着毛细管数的增加,无因次液膜厚度变得大于泰勒定律,从而获得更大的通道高度。这归因于高毛细管数下的惯性作用。将通道高度H用于无量纲的液膜厚度δ_0/ H并将水力直径D_h = 2H作为雷诺和韦伯数的特征长度,可以通过作者先前提出的圆管相关性很好地预测平行通道中的液膜厚度。这是因为在圆形管和平行通道中,气泡鼻和平坦膜区域之间的曲率差是相同的。

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