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Viscous dissipation effect on heat transfer characteristics of mixed electromagnetic/pressure driven liquid flows inside micropumps

机译:粘性耗散对微型泵内部电磁/压力混合液体流的传热特性的影响

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摘要

This paper presents the effect of viscous dissipation on heat transfer characteristics ot mixed electromagnetic/pressure driven liquid slip flows inside parallel plate microchannels. Flow is governed by the Navier-Stokes equations subject to the imposition of electromagnetic field with the boundary condition appropriate to the slip flow regime. For isoflux walls, some closed form expressions for the local and bulk temperature profiles and the Nusselt number in terms of dimensionless slip length, Hartmann number and Brinkman number are given, while the viscous dissipation is also taken into account. Then the analytical solutions derived in this analysis are elaborated. It turns out that since the contribution of the viscous dissipation on the Nusselt number under the given circumstances, especially a stronger electromagnetic field, may reach to nearly 10%, therefore, the viscous heating should be taken into consideration. Otherwise, the heat transfer rate may be overestimated or underestimated depending on whether the fluid is being heated or cooled. Also, there are singularities in Nusselt number values, which move close together by including the viscous dissipation. Further, an increase in the Hartmann number increases the convection, which is especially reflected in smaller values of dimensionless slip length.
机译:本文介绍了粘滞耗散对平行板微通道内部电磁/压力混合液滑流的传热特性的影响。流量由Navier-Stokes方程控制,服从电磁场的施加,其边界条件适合于滑流状态。对于等流量墙,给出了局部和整体温度曲线的一些闭合形式表达式,以及无量纲滑移长度,Hartmann数和Brinkman数的Nusselt数,同时还考虑了粘性耗散。然后详细阐述了该分析得出的解析解。事实证明,由于在给定的情况下,粘性耗散对Nusselt数的贡献,特别是较强的电磁场,可能达到近10%,因此,应考虑粘性加热。否则,取决于流体是被加热还是被冷却,传热速率可能被高估或低估。此外,努塞尔数值也有奇异点,它们通过包含粘性耗散而靠近在一起。此外,哈特曼数的增加增加了对流,这尤其体现在较小的无量纲滑移长度值上。

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