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Flow Boiling Heat Transfer in MicroChannel Heat Sinks of Different Flow Orientations

机译:不同流向的微通道散热器中的沸腾传热

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摘要

A study of FC-72 flow boiling in a microchannel heat sink with different orientations is presented. The heat sink consisted of 21 microchannels in parallel, with the channel dimensions of 0.2mm(W) x 2mm(H) x 15mm (L). The heat sink was attached onto a flip chip BGA package with a thermal grease at the interface to minimize the contact resistance. The experiments were conducted based on a subcooling around 31℃ and inlet thermodynamic equilibrium quality x =-0.4 with varying flowrates and power inputs for both the vertical upflow (VU) and the vertical downflow (VD) orientations. Boiling with bubbles was observed at the heat sink outlet even if the exit quality x < 0. It was found that the flow boiling regime can be represented by isolated bubble flow, slug flow in the present microchannels. Both the junction to inlet thermal resistances and pressure drops are presented as functions of the power input. The experimentally determined thermal resistances were also compared with an analytical analysis in the presence of both single phase convection and two phase saturated boiling heat transfer mechanisms. Good agreement is achieved at large power inputs.
机译:提出了在不同方向的微通道散热器中FC-72流动沸腾的研究。散热器由平行的21个微通道组成,通道尺寸为0.2mm(W)x 2mm(H)x 15mm(L)。将散热器固定在倒装芯片BGA封装上,并在界面处涂导热油脂以最大程度地降低接触电阻。实验是基于31℃左右的过冷和入口热力学平衡质量x = -0.4进行的,其中垂直向上流动(VU)和垂直向下流动(VD)方向的流量和功率输入均变化。即使出口质量x <0,在散热器的出口处也会观察到气泡的沸腾。发现在当前的微通道中,流动沸腾状态可以用孤立的气泡流,段塞流来表示。结点到入口的热阻和压降均随功率输入而变化。在存在单相对流和两相饱和沸腾传热机制的情况下,还将实验确定的热阻与分析分析进行比较。大功率输入可达成良好的一致性。

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