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Novel heat pipe radiator for vertical CPU cooling and its experimental study

机译:用于CPU垂直散热的新型热管散热器及其实验研究。

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摘要

A vertical radiator with multi pulse condensation ends and a plane evaporating end for vertical CPU cooling is developed. A 304 stainless steel test piece is processed and a detailed experimental study of heat transfer performance and start-up performance is performed. The influence of liquid filling rate, heating power and wind speed on the two performance of vertical heat pipe radiator is analyzed, and compared with aluminum fin computer CPU radiator. The results show that when the radiator works stably, the optimal filling ratio is 25%, the lowest thermal resistance is only 0.1 °C/W; the average temperature of heat source increases with the increase of heating power and decreases with the wind speed. The temperature distributions of the five cold ends exhibit a symmetry that attenuates from the middle to the both sides. In addition, when the radiator starts up, as the heating power increases, the initial start-up time becomes shorter, the start-up temperature becomes lower, and the stability is also better. But there is no symmetry in the start sequence of the condensation ends. Compared with the current aluminum fin radiator, the vertical radiator has superior heat dissipation performance, temperature uniformity and stability. Such as, under 80 W heating power, the average heat source temperature is 66 °C, the average temperature deviation of the heat source is 3.16 °C, compared to the aluminum fin radiator, they dropped by 17.3 °C and 0.61 °C, respectively.
机译:开发了具有多脉冲冷凝端的垂直散热器和用于垂直CPU冷却的平面蒸发端。处理了304不锈钢试件,并进行了热传递性能和启动性能的详细实验研究。分析了液体填充率,加热功率和风速对立式热管散热器两种性能的影响,并与铝翅片计算机CPU散热器进行了比较。结果表明,当散热器稳定工作时,最佳填充率为25%,最低热阻仅为0.1 C / W;热源的平均温度随着火力的增加而增加,随风速而降低。五个冷端的温度分布呈现出对称性,该对称性从中间向两侧衰减。另外,当散热器启动时,随着加热功率的增加,初始启动时间变短,启动温度变低,并且稳定性也更好。但是冷凝结束的开始顺序没有对称性。与目前的铝翅片散热器相比,立式散热器具有优越的散热性能,温度均匀性和稳定性。例如,在80 W的加热功率下,平均热源温度为66 C,热源的平均温度偏差为3.16 C,与铝翅片散热器相比,它们分别下降了17.3 C和0.61 C,分别。

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