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Viscous flow in variable cross-section microchannels of arbitrary shapes

机译:任意形状的可变截面微通道中的粘性流

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摘要

This paper outlines a novel approximate model for determining the pressure drop of laminar, single-phase flow in slowly-varying microchannels of arbitrary cross-section based on the solution of a channel of elliptical cross-section. A new nondimensional parameter is introduced as a criterion to identify the significance of frictional and inertial effects. This criterion is a function of the Reynolds number and geometrical parameters of the cross-section; i.e., perimeter, area, cross-sectional polar moment of inertia, and channel length. It is shown that for the general case of arbitrary cross-section, the cross-sectional perimeter is a more suitable length scale. An experimental investigation is conducted to verify the present model; 5 sets of rectangular microchannels with converging-diverging linear wall profiles are fabricated and tested. The collected pressure drop data are shown to be in good agreement with the proposed model. Furthermore, the presented model is compared with the numerical and experimental data available in the literature for a hyperbolic contraction with rectangular cross-section.
机译:本文概述了一种新颖的近似模型,该模型基于椭圆截面通道的解来确定层状单相流在任意截面的缓慢变化的微通道中的压降。引入了新的无量纲参数作为判别摩擦和惯性效应重要性的标准。该标准是雷诺数和横截面几何参数的函数。即周长,面积,横截面极惯性矩和通道长度。结果表明,对于任意横截面的一般情况,横截面周长是更合适的长度标尺。进行实验研究以验证该模型。制作并测试了5组具有收敛-发散线性壁轮廓的矩形微通道。显示所收集的压降数据与所提出的模型非常吻合。此外,对于矩形截面的双曲线收缩,将提出的模型与文献中提供的数值和实验数据进行了比较。

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