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HEAT TRANSFER PERFORMANCE OF A PHASE CHANGE MICROCAPSULE FLUID

机译:相变微胶囊流体的传热性能

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摘要

Polyalphaolefins (PAOs) are widely implemented for electronics cooling. However, they have a low thermal conductivity. Adding nanoparticles to a PAO can significantly improve the thermal properties of the coolant. In this paper, the thermal performance of phase change materials (PCM) fluids with reduced supercooling in the phase transition was studied in a microchannel heat sink, and compared with that of the pure PAO. A test loop was designed and fabricated to test the synthesized PCM fluids. The PCM fluid with uncoated PCM particles has a 36% higher heat transfer coefficient than the pure PAO. The heat transfer coefficient of a silver coated PCM coated was also higher than of the pure PAO but lower than of the uncoated PCM. The thermal resistance of the uncoated PCM fluid was about 20% lower that of the PAO fluid at the same pumping power, despite the PCM fluid's higher viscosity. Pumping tests run for several hours showed no effect on particle accumulation or settling within the heat transfer loop.
机译:聚α烯烃(PAO)广泛用于电子冷却。但是,它们具有低的热导率。将纳米颗粒添加到PAO中可以显着改善冷却液的热性能。本文在微通道散热器中研究了相变材料(PCM)流体在相变过程中过冷度降低的热性能,并将其与纯PAO进行了比较。设计并制造了一个测试回路以测试合成的PCM流体。具有未涂覆的PCM颗粒的PCM流体的传热系数比纯PAO高36%。涂覆银的PCM的传热系数也高于纯PAO,但低于未涂覆的PCM。尽管PCM流体的粘度较高,但在相同的泵送功率下,未涂覆的PCM流体的热阻比PAO流体的热阻低约20%。运行数小时的抽水测试表明,对传热环路内的颗粒堆积或沉降没有影响。

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