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Flow and heat transfer performance of a mini-channel radiator with cylinder disturbed flow

机译:圆柱扰流微通道散热器的流动与传热性能

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摘要

Mini-channel heat sinks have relatively low Nusselt number due to small Reynolds number. For heat transfer enhancement purpose, a mini-channel radiator with cylinder disturbed flow was proposed. The disturbed flow was created by a circular cylinder placed horizontally in front of channels entrance. The performance of heat transfer and pressure drop with/without disturbed flow was studied experimentally. It was found that the friction factor of mini-channel flow was larger than that of the macro-channel flow due to larger surface roughness, and the pressure drop caused by cylinder disturbed flow was less than 5%. It also concluded that the average Nusselt number increases with augment of Reynolds and Prandtl number. The Nusselt number correlations as the function of the Reynolds and Prandtl number were given for evaluation the heat removal performance of similar heat radiators. There is an inflexion point in the empirical formulas when the channel length equals to the thermal entrance length. For the mini-channels heat radiators with disturbed flow, the inflexion Reynolds number is larger than that of without disturbed flow. Due to the flow pulsing caused by circular cylinder placed in front of channels entrance, the thermal entrance length increases. On the other hand, for both mini-channels with or without disturbed flow, the thermal resistance increases with the decrease of pressure drop.
机译:由于雷诺数小,迷你通道散热器的Nusselt数相对较低。为了增强传热,提出了一种具有圆柱扰流的小通道散热器。扰流是由水平放置在通道入口前面的圆柱体产生的。实验研究了有/无扰动流动时的传热和压降性能。结果发现,由于较大的表面粗糙度,微通道流动的摩擦系数比大通道流动的摩擦系数大,气缸扰动引起的压降小于5%。它还得出结论,平均努塞尔数随雷诺数和普朗特数的增加而增加。给出了作为雷诺数和普朗特数的函数的努塞尔数相关性,以评估类似散热器的散热性能。当通道长度等于热入口长度时,经验公式中会有一个拐点。对于流动受到干扰的微通道散热器,其变形雷诺数要大于不受干扰的流动的雷诺数。由于放置在通道入口前面的圆柱体引起的流动脉动,热入口长度增加。另一方面,对于具有或不具有扰动流动的两个微型通道,热阻随着压降的减小而增加。

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