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INFLUENCE OF CHANNEL DIAMETER ON BOILING HEAT TRANSFER IN A CLOSED ADVANCED TWO-PHASE THERMOSYPHON LOOP

机译:通道直径对封闭式两相热烃环沸腾热传递的影响

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As heat generation from electronic components increase and the limit of air-cooling is reached, the interest for using liquid cooling for high heat flux applications has risen. Thermosyphon cooling is an alternative liquid cooling technique, in which heat is transferred as heat of vaporization from evaporator to condenser with a relatively small temperature difference. The effect of fluid properties, the structure of wall surfaces, and the effect of system pressure were investigated and reported previously by the authors. In this paper, experiments on an advanced thermosyphon loop consisting of an evaporator, a condenser and connecting tubing are presented. The influence of the diameter of the evaporator channels on the heat transfer coefficients is reported. The tested evaporators were made from small blocks of copper in which 7, 5, 4, 3, 2, 1 vertical channels with the diameters of 1.1, 1.5, 1.9, 2.5, 3.5 and 6 mm respectively and the length of 15 mm were drilled. Tests were done with Isobutane at heat fluxes ranging between 22.4-303 kW/m~(2). Experimental results in terms of heat transfer coefficients at different tubing length between evaporator and condenser are presented.
机译:随着从电子元件的发热增加并且达到空气冷却的极限,对于高热通量应用的使用液体冷却的利息已经上升。热辛菌冷却是一种替代的液体冷却技术,其中作为蒸发器的蒸发热传递热量,从蒸发器到冷凝器,温度差异相对较小。本作者研究和先前研究了流体性质,壁表面的结构和系统压力效果的影响。在本文中,提出了一种由蒸发器,冷凝器和连接管组成的先进热脊柱环路的实验。报道了蒸发器通道直径对传热系数的影响。通过小块制成测试的蒸发器,其中7,5,4,3,2,1的垂直通道分别为1.1,1.5,1.9,2.5,3.5和6mm的直径,钻出15mm的长度。在22.4-303 kW / m〜(2)之间的热通量下的异丁烷在异丁烷中进行试验。提出了蒸发器和冷凝器之间不同管道长度的传热系数的实验结果。

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