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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Modeling study on axial wetting length of meniscus in vertical rectangular microgrooves
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Modeling study on axial wetting length of meniscus in vertical rectangular microgrooves

机译:垂直矩形微槽中弯月面轴向润湿长度的建模研究

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In this work, the traditional model for predicting axial wetting length of meniscus in vertical microgrooves is introduced firstly. The traditional model may cause inaccurate results in predicting wetting length in vertical microgrooves because of the assumption of round meniscus in cross sections of microgrooves and the way of calculating curvature. In order to develop this model and make it more accurate, a revised micro-PIV system is built to test the meniscus shapes in cross sections of vertical and horizontal microgrooves, and the experimental results prove that the real shapes of meniscus are parabolic other than round. The fitting formulas of meniscus shapes are obtained with software Origin 7.5. Based on experimental results and fitting formulas, the traditional model is revised by changing the way to calculate curvature. In the modified model, the curvature for calculating axial wetting length of meniscus equals average curvature of meniscus in cross section of vertical microgrooves minus the average curvature of meniscus in cross section of horizontal microgrooves. It is proved that the modified model can predict the wetting length in vertical microgrooves better than the original model. The average difference between experiment and modified model is 2.5% while that between experiment and traditional model is 174.2%. The disadvantage of the modified model is that using the new model to predict wetting length needs to know the real shapes of meniscus in vertical and horizontal microgrooves.
机译:在这项工作中,首先介绍了用于预测垂直微槽中弯月面轴向润湿长度的传统模型。传统的模型可能会导致在预测垂直微槽的润湿长度时得出不正确的结果,这是因为假定微槽的横截面为圆形弯月面以及计算曲率的方式。为了开发该模型并使其更精确,建立了一个改进的micro-PIV系统来测试垂直和水平微槽的横截面中的弯月面形状,并且实验结果证明弯月面的实际形状是抛物线形而不是圆形。弯月形状的拟合公式可通过Origin 7.5软件获得。基于实验结果和拟合公式,通过更改计算曲率的方式来修改传统模型。在修改后的模型中,用于计算弯月面轴向润湿长度的曲率等于垂直微槽横截面中弯月面的平均曲率减去水平微槽横截面中弯月面的平均曲率。实践证明,改进后的模型能较好地预测垂直微槽的润湿长度。实验模型与改进模型之间的平均差异为2.5%,而实验模型与传统模型之间的平均差异为174.2%。修改后的模型的缺点在于,使用新模型预测润湿长度需要了解垂直和水平微槽中弯液面的真实形状。

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