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HEAT TRANSPORT CHARACTERISTICS OF THE CAPILLARY PUMPED LOOP FOR COOLING THE TOWER-TYPE COMPUTER

机译:冷却塔式电脑的毛细管泵送环的热传输特性

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In this study the capillary pumped loop was manufactured as a cooling device for the tower-type personal computer and the heat transport characteristics of this cooling device was investigated. The experimental equipment consisted of the evaporator, the condenser, the liquid tube, the vapor tube and the reservoir. The length and the diameter of the evaporator were 150mm and 27mm respectively and had capillary wick in it with equivalent diameter of 5μm. In the experiment, the heat flux to the evaporator and the cooling water temperature were changed. And the effects of enclosed quantity of the working fluid (R134a) in the reservoir and the evaporator height above the condenser on heat transport rate were also investigated. Experimental results shown that this capillary pumped loop was able to transport heat rate of 15 to 95W (heat flux of 995 to 6051W/m{sup}2) with highest temperature of 343K and that the temperature difference in the loop was 16.7 to 43.9 K in the case of 2500mm in its heat transport length and cooling temperature of 293K. And it was derived that the working fluid enclosed rate affected the maximum heat transport rate. The computer code was also developed to evaluate the effect of the refrigerant enclosed rate and the wick thickness on the heat transport rate considering the pressure drop to the circumference direction in the wick.
机译:在该研究中,将毛细管泵送环作为用于塔式个人计算机的冷却装置,并研究了该冷却装置的热传输特性。实验设备由蒸发器,冷凝器,液管,蒸汽管和储存器组成。蒸发器的长度和直径分别为150mm和27mm,毛细管芯具有等效直径为5μm。在实验中,改变了蒸发器和冷却水温度的热通量。还研究了储存器中的工作流体(R134a)的封闭量和冷凝器上方的蒸发器高度对热传输速率的影响。实验结果表明,该毛细管泵送环路能够将15至95W的热速率(995至6051W / m {Sup} 2的热通量运输,最高温度为343k,并且环中的温度差为16.7至43.9 k在其热传输长度和冷却温度为293k的情况下,在2500mm的情况下。并且它被推出的是,工作流体封闭率影响了最大热传输速率。还开发了计算机代码以评估制冷剂封闭速率和芯厚度对芯中的圆周方向的热传输速率的影响。

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