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Numerical Investigation of Viscous Dissipation in Elliptic Microducts

机译:椭圆微粒粘性耗散的数值研究

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In this work a numerical analysis of heat transfer in elliptical microchannels heated at constant and uniform heat flux is presented. A gaseous flow has been considered, in laminar steady state condition, in hydrodynamically and thermally fully developed forced convection, accounting for the rarefaction effects. The velocity and temperature distributions have been determined in the elliptic cross section, for different values of aspect ratio, Knudsen number and Brinkman number, solving the Navier-Stokes and energy equations within the Comsol Multiphysics environment. The numerical procedure has been validated resorting to data available in literature for slip flow in elliptic cross sections with Br =0 and for slip flow in circular ducts with Br >0. The comparison between numerical results and data available in literature shows a perfect agreement. The velocity and temperature distributions thus found have been used to calculate the average Nusselt number in the cross section. The numerical results for Nusselt number are presented in terms of rarefaction degree (Knudsen number), of viscous dissipation (Brinkman number), and of the aspect ratio. The results point out that the thermal fluid behavior is significantly affected by the viscous dissipation for low rarefaction degrees and for aspect ratios of the elliptic cross-section higher than 0.2.
机译:在这项工作中,提出了在恒定和均匀的热通量下加热的椭圆形微型通道中传热的数值分析。在流体动力学和热完全发育的强制对流中,在层流稳态条件下考虑了气流,占稀疏效应。已经在椭圆形横截面中确定了速度和温度分布,用于纵横比,knudsen号和Brinkman号码的不同值,求解COMSOL多体学环境内的Navier-Stokes和能量方程。数值程序已被验证诉诸文献中可用的数据,以便在椭圆形横截面中具有BR = 0的椭圆形横截面和圆形管道中的滑动流动,与BR> 0。文献中可用数值结果和数据的比较显示了完美的一致性。因此,所发现的速度和温度分布已被用于计算横截面中的平均衬布数。果实号的数值结果在稀疏程度(Chaudsen号),粘性耗散(Brinkman号)和纵横比上呈现。结果指出,热流体行为受到低稀疏度的粘性耗散和高于0.2的椭圆形横截面的纵横比的显着影响。

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