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Heat transfer enhancement by recirculating flow within liquid plugs in microchannels

机译:通过再循环微通道中液体塞内的流动来增强传热

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摘要

Plug flow can significantly enhance heat transfer in microchannels as compared to single phase flow. Using an analytical model of flow field, heat transfer in plug flow is investigated. The constant-surface temperature boundary condition is considered. Three stages of the heat transfer in plugs are identified: (i) development of thermal boundary layer; (ii) advection of heated/fresh fluid in the plug; and (iii) ther mally fully developed flow. Due to the transport of heated fluid and fresh fluid within the plug by the recirculating flow, oscillations of the Nusselt number at high Peclet numbers are observed and explained. The effects of the Peclet number and the plug length on the heat transfer process are evaluated. The results show that short plugs are preferable to long plugs since short plugs result in high Nusselt numbers and high heat transfer indices.
机译:与单相流相比,活塞流可以显着增强微通道中的传热。使用流场分析模型,研究了塞流中的热传递。考虑恒定表面温度边界条件。确定了塞子中的热传递的三个阶段:(i)热边界层的形成; (ii)对流加热/新鲜的流体在塞子中; (iii)完全发展的流量。由于循环流在塞子内加热的流体和新鲜的流体的传输,在高Peclet数下观察到并解释了Nusselt数的振荡。评估了Peclet数和塞子长度对传热过程的影响。结果表明,短插头优于长插头,因为短插头会导致较高的努塞尔数和较高的热传递指数。

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