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First law analysis for viscous dissipation in liquid flows in micro-channels

机译:微通道液体流动中粘性耗散的第一定律分析

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This paper focuses on temperature rise due to the viscous dissipation in liquids flowing through micro-channels. In the past, equations for the prediction of the temperature rise have been obtained as a function of the friction factor, Reynolds number and Eckert number or a similar form, starting from Navier-Stokes equation and energy equation under the assumption of fully developed laminar flow by researchers. The temperature rises calculated from the equations have been compared with experimental data and the equations have been validated. However, in this paper, a new equation for the prediction of the temperature rise is simply obtained from the first law of thermodynamics without restriction of fully developed laminar flow.
机译:本文关注由于微通道中液体的粘性耗散而导致的温升。过去,在充分发展层流的前提下,从纳维-斯托克斯方程和能量方程开始,已经获得了作为摩擦系数,雷诺数和埃克特数或类似形式的函数的预测温度升高的方程由研究人员。根据方程计算出的温升已与实验数据进行了比较,并验证了方程。然而,在本文中,从热力学的第一定律简单地获得了一个预测温度升高的新方程式,而没有限制层流的充分发展。

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