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Natural Convection in a Vertical Microchannel

机译:垂直微通道中的自然对流

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It is highly desirable to understand the fluid flow and the heat transfer characteristics of buoyancy-induced micropump and microheat exchanger in microfluidic and thermal systems. In this study, we analytically investigate the fully developed natural convection in an open-ended vertical parallel-plate microchannel with asymmetric wall temperature distributions. Both of the velocity slip and the temperature jump conditions are considered because they have countereffects both on the volume flow rate and the heat transfer rate. Results reveal that in most of the natural convection situations, the volume flow rate at microscale is higher than that at macroscale, while the heat transfer rate is lower. It is, therefore, concluded that the temperature jump condition induced by the effects of rarefaction and fluid-wall interaction plays an important role in slip-flow natural convection.
机译:非常需要了解微流体和热系统中浮力诱导的微型泵和微型热交换器的流体流动和传热特性。在这项研究中,我们分析性地研究了具有不对称壁温分布的开放式垂直平行板微通道中完全发展的自然对流。考虑速度滑移和温度跳跃条件,因为它们对体积流率和传热率都有反作用。结果表明,在大多数自然对流情况下,微观尺度的体积流率要大于宏观尺度的流率,而传热率则较低。因此,得出的结论是,稀疏和流体-壁相互作用的影响所引起的温度跳跃条件在滑流自然对流中起着重要作用。

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