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Numerical predictions of the flow and thermal performance of water-cooled single-layer and double-layer wavy microchannel heat sinks

机译:水冷单层和双层波浪形微通道散热器的流动和热性能的数值预测

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摘要

Various microchannel heat sinks for dissipating heat loads have received great attention. Wavy channels are recognized to be suitable to enhance the heat transfer, and are successfully applied in heat-exchange devices. In this article, three kinds of water-cooled microchannel heat sinks, such as a rectangular straight microchannel heat sink, a single-layer wavy microchannel heat sink and a double-layer wavy microchannel heat sink, have been designed and the corresponding laminar flow and heat transfer have been investigated numerically. The effects of the wave amplitude on heat transfer, pressure drop, and thermal resistance are also observed. Results show that for removing an identical heat load, the overall thermal resistance of the single-layer wavy microchannel heat sink decreases with increasing volumetric flow rate, but the pressure drop is increased greatly. At the same flow rate, the double-layer wavy microchannel heat sinks can reduce not only the pressure drop but also the overall thermal resistance compared to the single-layer wavy microchannel heat sinks. In addition to the overall thermal resistance, other criteria for evaluation of the overall thermal performance, e.g., (Nu/Nu_0)/(f/ f_0), and (Nu/Nu_0)/(f/f_0)~(1/3), are applied and some controversial results are obtained.
机译:各种用于散热的微通道散热器受到了极大的关注。波浪形通道被认为适合增强热传递,并成功应用于热交换设备中。本文设计了矩形直型微通道散热器,单层波浪形微通道散热器和双层波浪形微通道散热器三种水冷式微通道散热器,并设计了相应的层流和对传热进行了数值研究。还观察到波幅对传热,压降和热阻的影响。结果表明,为消除相同的热负荷,单层波浪形微通道散热器的总热阻随体积流量的增加而减小,但压降却大大增加。与单层波浪形微通道散热器相比,在相同流速下,双层波浪形微通道散热器不仅可以降低压降,而且可以降低总体热阻。除了总体热阻外,用于评估总体热性能的其他标准,例如(Nu / Nu_0)/(f / f_0)和(Nu / Nu_0)/(f / f_0)〜(1/3)被应用,并获得一些有争议的结果。

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