首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Analysis of the Effects of Joule Heating and Viscous Dissipation on Combined Pressure-Driven and Electrokinetic Flows in a Two-Parallel Plate Channel with Unequal Constant Temperatures
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Analysis of the Effects of Joule Heating and Viscous Dissipation on Combined Pressure-Driven and Electrokinetic Flows in a Two-Parallel Plate Channel with Unequal Constant Temperatures

机译:焦耳加热和粘性耗散对两个平行板通道中的组合压力驱动和电动流动的影响分析,具有不等恒定温度

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摘要

In this article, we perform an entropy generation analysis for the micro channel heat sink applications where the flow of fluid is actuated by combined influences of applied pressure gradient and electric field under electrical double layer phenomenon. The upper and lower walls of the channels are kept at different constant temperatures. The temperature-dependent viscosity of the fluid is considered and hence the momentum equation and energy equations are coupled in this study. Also, a hydrodynamic slip condition is employed on the viscous dissipation. For complete analysis of the entropy generation, we use a perturbation approach with lubrication approximation. In this study, we discuss the results depicting variations in the velocity and temperature distributions and their effect on local entropy generation rate and Bejan number in the system. It can be summarized from this analysis that the enhanced velocity gradients in the flow field due to combined effect of temperature-dependent viscosity and Joule heating and viscous dissipative effects, leads to an enhancement in the local entropy generation rate in the system.
机译:在本文中,我们对微通道散热器应用进行熵生成分析,其中通过施加的压力梯度和电场在电双层现象下的组合影响来致动流体流动。通道的上壁和下壁保持在不同的恒定温度。考虑了流体的温度依赖性粘度,因此在该研究中耦合动量方程和能量方程。而且,采用流体动力滑动条件在粘性耗散上。为了完全分析熵生成,我们使用具有润滑近似的扰动方法。在这项研究中,我们讨论了描述速度和温度分布的变化及其对系统中局部熵生成率和BEJAN数的影响的结果。从该分析总结,由于温度依赖性粘度和焦耳加热和粘性耗散效应的组合效应,流场中增强速度梯度导致系统中局部熵产生率的增强。

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