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首页> 外文期刊>Journal of Heat Transfer >Temperature-Dependent Viscosity and Viscous Dissipation Effects in Simultaneously Developing Flows in MicroChannel With Convective Boundary Conditions
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Temperature-Dependent Viscosity and Viscous Dissipation Effects in Simultaneously Developing Flows in MicroChannel With Convective Boundary Conditions

机译:对流边界条件下微通道中同时流动的温度相关粘度和粘性耗散效应

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摘要

The effects of viscous dissipation and temperature dependent viscosity in simultaneously developing laminar flows of liquids in straight microchannels are studied with reference to convective boundary conditions. Two different geometries, namely the circular tube and the parallel plate channel, are considered. Viscosity is assumed to vary with temperature according to an exponential relation, while the other fluid properties are held constant. A finite element procedure, based on a projection algorithm, is employed for the step-by-step solution of the parabolized momentum and energy equations. Axial distributions of the local overall Nusselt number and of the apparent Fanning friction factor are presented with reference to both heating and cooling conditions for two different values of the Biot number. Examples of radial temperature profiles at different axial locations and of axial distributions of centerline velocity and temperature are also shown.
机译:参照对流边界条件,研究了在直线微通道中同时发展的层流中粘性耗散和温度依赖性粘度的影响。考虑了两种不同的几何形状,即圆形管和平行板通道。假定粘度根据指数关系随温度变化,而其他流体特性保持恒定。基于抛物线算法的有限元程序被用于逐步分解的动量和能量方程式。针对两个不同的毕奥特值的加热和冷却条件,给出了局部总Nusselt值和表观Fanning摩擦因数的轴向分布。还示出了在不同轴向位置处的径向温度分布以及中心线速度和温度的轴向分布的示例。

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