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Implementation of MicroChannel Evaporator for High-Heat-Flux Refrigeration Cooling Applications

机译:用于高热通量制冷冷却应用的微通道蒸发器的实现

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摘要

While most recently electronic cooling studies have been focused on removing the heat from high-power-density devices, the present study also explores means of greatly decreasing the device operating temperature. This is achieved by incorporating a micro-channel heat sink as an evaporator in an R134a refrigeration loop. This system is capable of maintaining device temperatures below 55℃ while dissipating in excess of 100 W/cm~2. It is shown that while higher heat transfer coefficients are possible with greater mass velocities, those conditions are typically associated with wet compression corresponding to evaporator exit quality below unity and liquid entrainment at the compressor inlet. Wet compression compromises compressor performance and reliability as well as refrigeration cycle efficiency and therefore must be minimized by maintaining only slightly superheated conditions at the compressor inlet, or using a wet-compression-tolerant compressor. A parametric study of the effects of channel geometry on heat sink performance points to channels with small width and high aspect ratio as yielding superior thermal performance corresponding to only a modest penalty in pressure drop.
机译:虽然最近的电子冷却研究一直集中在从高功率密度设备中去除热量,但本研究还探索了大大降低设备工作温度的方法。这是通过在R134a制冷回路中结合微通道散热器作为蒸发器来实现的。该系统能够将器件温度保持在55℃以下,同时耗散超过100 W / cm〜2。结果表明,在较高的质量速度下,较高的传热系数是可能的,但这些条件通常与湿压缩有关,湿压缩与蒸发器出口质量低于1并在压缩机入口夹带液体有关。湿压缩会损害压缩机的性能和可靠性以及制冷循环效率,因此必须通过在压缩机入口处仅保持略微过热的条件或使用耐湿压缩的压缩机来使其最小化。对通道几何形状对散热器性能的影响的参数研究表明,通道具有较小的宽度和高的长宽比,可产生出色的热性能,仅相当于压降的中等损失。

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