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THERMAL PERFORMANCE OF A CAPILLARY PUMPED LOOP FOR AUTOMOTIVE COOLING

机译:汽车冷却用毛细管泵的热性能

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The design and test results for a capillary pumped loop (CPL) for thermal management of up to 210 W at the source and heat transfer over a distance of 1 m are discussed. The design configuration of the CPL evaporator consists of an internally grooved aluminum evaporator, 31.70-mm outer diameter and 500-mm long, fitted with a porous ultra-high molecular weight polyethylene wick, 8- to 15-μm pore radius, and 38% porous volume. Heat was transferred using a stainless steel tube of 4.5-mm internal diameter for vapor and liquid lines. High-grade acetone (99.99% pure) was used as the heat transfer fluid inside the loop. In the tests, thermal characteristics of the CPL were specifically studied with respect to the temperature control capability using an active thermal device on the reservoir and to the start-up process through pressure priming of the capillary evaporator. The loop was able to start-up successfully at both low and high heat loads, although proper priming of the wick structure before start-up was necessary to attain low evaporator temperatures during steady-state operation. While maintaining constant reservoir temperature through active means, the loop was able to control evaporator temperature within 55 ± 3℃, even with changing input heat from 30 to 210 W. Total thermal resistance from the evaporator surface to the surroundings was 0.19° to 1.15° C/W with the minimum value achieved at the maximum heat load of 210 W. This study is intended to illustrate the thermal potential of the CPL as an effective temperature control device in automotive applications.
机译:讨论了毛细泵送回路(CPL)的设计和测试结果,该毛细泵送回路用于在源头进行高达210 W的热管理并在1 m的距离内进行热传递。 CPL蒸发器的设计配置包括一个内凹槽铝蒸发器,外径为31.70mm,长为500mm,装有多孔超高分子量聚乙烯芯,孔径为8至15μm,占38%多孔的体积。使用内径为4.5 mm的不锈钢管传递热量,用于蒸汽和液体管线。高级丙酮(纯度为99.99%)用作回路内的传热流体。在测试中,专门针对CPL的热特性进行了研究,涉及使用储层上的有源热装置的温度控制能力以及通过毛细管蒸发器的压力灌注启动过程。该回路能够在低和高热负荷下成功启动,尽管在启动前为稳定运行期间达到较低的蒸发器温度而必须在启动前对灯芯结构进行适当的起动。在通过主动方式使储层温度保持恒定的同时,即使输入热量从30 W变为210 W,回路也能够将蒸发器温度控制在55±3℃之内。从蒸发器表面到周围环境的总热阻为0.19°至1.15° C / W,最大热负荷为210 W时达到最小值。本研究旨在说明CPL作为汽车应用中有效温度控制装置的热势。

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