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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Heat transfer enhancement of microchannel heat sink with longitudinal vortex generators and bypass jet flow
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Heat transfer enhancement of microchannel heat sink with longitudinal vortex generators and bypass jet flow

机译:带纵向涡流发电机和旁路射流的微通道散热器的传热增强

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摘要

Aiming to enhance the heat transfer characteristics of microchannel heat sink,the present study firstly proposes a method to construct 45° ribs on lower surface of the channel wall.The ribs could induce longitudinal vortices,and cause drastic mixing of the coolant fluid.Furthermore,a bypass channel with an opening located at downstream region is set up on upper walls of the channels.The bypass jet flow would augment furtherly the mixing of coolant fluid.The effects of rib number (N),rib height (R_h) and bypass channel configuration on flow structure,thermal field,pressure drop and hot spot temperature of the heat sink are investigated detailed.Results show that the reduction in hot spot temperature of the heat sink is larger for a higher R_h.For a given R_h,there is an optimum N for minimizing hot spot temperature.The influences of bypass channel height on heat transfer characteristics are more significant than the opening width and location.The maximum reduction in hot spot temperature is 30.81% for ribs constructed on channel wall.While it can be up to 49.97% when the ribs and a bypass channel are constructed simultaneously.
机译:旨在增强微通道散热器的传热特性,本研究首先提出了一种在通道壁的下表面上构建45°肋的方法。肋骨可以诱导纵向涡流,并导致冷却剂流体的剧烈混合。加热,具有位于下游区域的开口的旁通通道设置在通道的上壁上。旁路射流将进一步增加冷却剂流体的混合。肋号(n),肋高度(R_h)和旁通通道的影响在流动结构上进行配置,调查散热器的热场,压力下降和热点温度。结果表明,散热器的热点温度的降低对于更高的R_H,散热器更大。对于给定的R_H,有一个最佳N,用于最小化热点温度。旁通通道高度对传热特性的影响比开口宽度和位置更显着。热点温度的最大减少e为沟道墙上构建的肋骨30.81%。当肋条和旁通通道同时构造时,它可以高达49.97%。

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