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Miniature vapor compression refrigeration system for electronics cooling

机译:微型蒸气压缩制冷系统,用于电子设备冷却

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A miniature vapor compression refrigeration system using R134a is investigated for electronics cooling. The system consists of four main components: an evaporator, a compressor, a capillary tube, and a condenser. The evaporator is a micro-channel heat sink with 106 rectangular cross-sectional channels. Each micro-channel has a depth of 450?μm, a width of 150?μm, a wall thickness of 150?μm, and a length of 20?mm. Experimental conditions include compressor speeds ranging between 3000 and 6000 RPM and heating power of 100?W, 150?W, and 200?W. The experimental results show that increased compressor speed could reduce the surface temperature of the heater but also decrease the coefficient of performance (COP). The highest COP gained is 9.069 at a compressor speed of 3000 RPM and a heating power of 200?W, which yields the heater surface temperature of 73.3?°C. This miniature vapor compression refrigeration system could be used for electronics cooling with the most suitable conditions at heating power of 200?W and compressor speed of 3000 RPM. The proposed system is not suitable for electronics cooling at a heating power of 100?W and 150?W, because the heater surface temperature is less than 40?°C.
机译:研究了使用R134a的微型蒸汽压缩制冷系统用于电子设备的冷却。该系统由四个主要组件组成:蒸发器,压缩机,毛细管和冷凝器。蒸发器是具有106个矩形横截面通道的微通道散热器。每个微通道的深度为450μm,宽度为150μm,壁厚为150μm,长度为20μmm。实验条件包括压缩机转速在3000至6000 RPM之间,加热功率分别为100 W,150 W和200W。实验结果表明,提高压缩机转速可以降低加热器的表面温度,但也会降低性能系数(COP)。在3000 RPM的压缩机速度和200?W的加热功率下,获得的最高COP为9.069,这将使加热器表面温度达到73.3?C。这种微型蒸气压缩制冷系统可用于电子制冷,最适合的条件是加热功率为200 W,压缩机转速为3000 RPM。所提出的系统不适用于加热功率为100?W和150?W的电子设备冷却,因为加热器表面温度低于40?C。

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