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Comparative study for convective heat transfer of counter-flow wavy double-layer microchannel heat sinks in staggered arrangement

机译:交错布置反流波浪双层微通道散热器对比传热的比较研究

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摘要

This study proposes a modification of double-layer Microchannel Heat Sinks (DMHSs) into wavy configuration with swap of upper and lower layer design. The design can effectively improve the comparatively low cooling effectiveness at the upper layer, yet the swap of flow can promote re-developing of flow field and heat transfer accordingly. Both parallel and counter flow arrangements of the proposed configurations are examined in details. It is found that the staggered wavy DMHSs with opposite amplitude shows superior heat transfer enhancement. Regardless of the types of heat sink being investigated, the maximum temperature for all parallel flow arrangement always occurs at the exit while the maximum temperature for counter flow is in the interior of heat sink but is close to the exit. Interestingly, the swap design of counter flow arrangement (parallel channel or wavy) shows two maximum temperatures in the first and second half of the heat sink. Basically, the counter flow of straight staggered DMHS has the best overall thermal performance among the counter flows of straight parallel DMHS, synclastic wavy staggered DMHS and opposite wavy staggered DMHS. This is because the wavy staggered DMHS incur more pressure drop and pumping power accordingly.
机译:本研究提出了将双层微通道散热器(DMHS)的修改为波浪构型,其互连和下层设计。该设计可以有效地提高上层的相对低的冷却效果,但流动的交换可以促进流场的重新发展和相应的热传递。详细地检查所提出的配置的平行和逆流装置。发现具有相反幅度的交错波状DMHS显示出优异的传热增强。无论所研究的散热器类型如何,所有平行流动装置的最高温度总是发生在出口处,而计数器流动的最高温度在散热器的内部,但靠近出口。有趣的是,计数器流量排列(并联通道或波浪)的交换设计在散热器的第一和第二半部分中示出了两个最大温度。基本上,直交错的DMHS的逆流具有在逆行平行DMHS的逆流中具有最佳的总热性能,Synclastic Wavy交错DMHs和对面的波浪交错DMHs。这是因为波浪交错的DMHs相应地产生了更多的压力下降和泵送功率。

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