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首页> 外文期刊>Journal of Electronic Packaging >An Experimental Study of Transient Heat Transfer From Discrete Heat Sources in Water Cooled Vertical Rectangular Channel
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An Experimental Study of Transient Heat Transfer From Discrete Heat Sources in Water Cooled Vertical Rectangular Channel

机译:水冷垂直矩形通道离散热源瞬态传热的实验研究

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摘要

Experiments are performed to study the single-phase transient forced convection heat transfer on an array of 4×1 flush-mounted discrete heat sources in a vertical rectangular channel during the pump-on transient operation. Water is the coolant media and the flow covers the wide range of laminar flow regime with Reynolds number, based on heat source length, from 800 to 2625. The applied uniform heat flux ranges from 1 to 7 W/cm{sup}2. For flush-mounted heaters the heat transfer characteristics are studied and correlations are presented for four chips as well as for overall data in the transient regime. The experimental results indicate that the heat transfer coefficient is affected strongly by the number of chips and the Reynolds number. Finally the general impacts of heat source protrusions (B=1, 2 mm) on heat transfer behavior of four chips are investigated by comparing the results obtained from flush-mounted (B=0) heaters.
机译:进行了实验,以研究在泵送瞬态运行过程中,在垂直矩形通道中的4×1齐平安装离散热源阵列上的单相瞬态强迫对流换热。水是冷却剂介质,其流动范围广泛,层流状态基于雷诺数(基于热源长度)为800至2625。所施加的均匀热通量范围为1至7 W / cm {sup} 2。对于嵌入式安装的加热器,研究了其传热特性,并给出了四个芯片以及瞬态状态下的整体数据的相关性。实验结果表明,传热系数受芯片数量和雷诺数的影响很大。最后,通过比较从齐平安装(B = 0)加热器获得的结果,研究了热源突起(B = 1,2 mm)对四个芯片的传热性能的一般影响。

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