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Analysis of the heat transfer in unsymmetrically heated triangular microchannels in slip flow regime

机译:滑流状态下非对称加热三角微通道传热分析

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A theoretical analysis of heat transfer characteristics is presented for the fully developed laminar flow of the incompressible gas in the triangular microchannels heated unsymmetrically with constant axial heat flux. Through solving the energy equation with temperature jump boundary conditions in slip flow regime by virtue of a computation-oriented method of the orthonormal function analysis, the dimensionless temperature profiles and the average Nusselt number for various thermal boundary conditions are obtained. The effects of Knudsen number, aspect ratio, and thermal boundary conditions on the heat transfer are discussed. The calculated results show that the orthonormal function method can be used to study the heat transfer characteristics of the unsymmetrically heated triangular microchannels. The average Nusselt number in triangular microchannels is lower for slip flow than for no-slip flow, and decreases with increasing Knudsen number. The aspect ratios and thermal boundary conditions of triangular microchannels have significant influences on the change of average Nusselt numbers with the increase in the Knudsen number. For the equilateral triangular microchannels, the decrease of the Nusselt number ratio due to temperature jump is smaller at large Knudsen number and larger at small Knudsen number on the boundary condition of bottom wall heated alone as compared with the one on the boundary condition of two heated hypotenuse walls. The correlations of the average Nusselt number with the Knudsen number for equilateral triangular microchannels are obtained.
机译:对在恒定轴向热通量下不对称加热的三角形微通道中不可压缩气体的充分展开的层流,进行了传热特性的理论分析。通过基于正交函数分析的面向计算方法求解滑流状态下具有温度跃变边界条件的能量方程,获得了各种热边界条件的无量纲温度曲线和平均努塞尔数。讨论了克努森数,长宽比和热边界条件对传热的影响。计算结果表明,正交函数法可用于研究非对称加热三角微通道的传热特性。滑流的三角微通道中的平均努塞尔数比无滑流的低,并且随着努森数的增加而减小。三角形微通道的长宽比和热边界条件对平均努塞尔数随Knudsen数的增加具有显着影响。对于等边三角形微通道,与单独加热的底壁边界条件相比,在单独加热的底壁边界条件下,温度跃迁引起的努塞尔数比的减小在大克努森数时较小,在小克努森数时较大。斜边墙。获得了等边三角形微通道的平均努塞尔数与克努森数的相关性。

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