首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal characteristics of electromagnetohydrodynamic flows in narrow channels with viscous dissipation and Joule heating under constant wall heat flux
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Thermal characteristics of electromagnetohydrodynamic flows in narrow channels with viscous dissipation and Joule heating under constant wall heat flux

机译:恒定壁热通量下具有粘性耗散和焦耳热的狭窄通道中电磁流体动力流的热特性

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摘要

The present paper critically analyzes, for the first time, the heat transfer characteristics associated with thermally fully developed combined electromagnetohydrodynamic flows through narrow flow conduits, considering electrokinetics effects, for the constant wall heat flux condition. In order to maintain the generality of the problem under consideration, the liquid flow is actuated by a combination of imposed pressure-gradient, electrokinetic effects and additional electromagnetic interactions. The alterations in the thermal transport phenomenon, induced by the variations in the imposed electromagnetic effects are thoroughly explained, in a pin-pointed manner, through an elegant analytical formalism. The essential features of the electromagnetohydrodynamic flow, and associated heat transfer characteristics, through the narrow confinement, are clearly highlighted by the variations in the non-dimensional flow velocity, non-dimensional temperature profile and the Nusselt number. Moreover, the influence of the imposed electromagnetic effects on microano-scale thermal transport characteristics is clearly differentiated from other inherent effects like Joule heating and viscous dissipation. The implications of the constant wall temperature condition are also briefly discussed. The present endeavor has far-reaching implications towards the development of state-of-the-art electro-magneto-mechanical devices, with improved efficiency and functionality, for applications in the field of micro-scale thermal management.
机译:本文首次对壁恒定的热通量条件进行了严格的分析,考虑了电动学的影响,与热充分发展的组合电磁流体动力流经狭窄的流动管道相关的传热特性,考虑了电动力学效应。为了保持所考虑问题的普遍性,通过施加压力梯度,电动效应和其他电磁相互作用的组合来驱动液体流动。通过优雅的分析形式,以精确的方式彻底解释了由强加的电磁效应的变化引起的热传输现象的变化。无量纲流速,无量纲温度分布和Nusselt数的变化清楚地突出了电磁流体动力流的基本特征以及通过狭窄限制的相关传热特性。而且,强加的电磁效应对微米/纳米级热传输特性的影响与焦耳加热和粘性耗散等其他固有效应明显不同。还简要讨论了恒定壁温条件的含义。当前的努力对于开发用于微型热管理领域的,具有改进的效率和功能的最新电磁机械设备具有深远的意义。

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