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Heat Transfer Properties of a Latent Thermal Storage Unit with Flat Microheat Pipe Arrays

机译:带有扁平微热管阵列的潜热存储单元的传热特性

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A thermal storage unit (TSU) with flat microheat pipe arrays (FMHPAs) as heat transfer core is experimentally investigated in this study. A comprehensive evaluation parameter of the TSU defined as thermal power intensity is proposed. The effects of the length proportion of the air side and the phase-change material (PCM) side on the heat transfer properties of TSU are also examined. Phase-change behavior of the PCM, heat transfer characteristics, and thermal resistance distribution are analyzed and discussed. Results show that the FMHPAs greatly enhanced the heat transfer rate between the air and the PCM. The thermal resistance of the air side is nearly three times greater than that of the PCM side. Keeping the length of the storage section 480 mm long and varying the length of the heating and cooling sections from 130 to 160 mm and 190 mm, the best performance was obtained for the length of 160 mm. (C) 2017 American Society of Civil Engineers.
机译:在本研究中,对以扁平微热管阵列(FMHPAs)为传热芯的储热单元(TSU)进行了实验研究。提出了TSU的综合评估参数,即热功率强度。还研究了空气侧和相变材料(PCM)侧的长度比例对TSU传热性能的影响。分析并讨论了PCM的相变行为,传热特性和热阻分布。结果表明,FMHPAs大大提高了空气与PCM之间的传热速率。空气侧的热阻几乎是PCM侧的三倍。保持存储部分的长度为480 mm,加热和冷却部分的长度从130 mm更改为160 mm,冷却部分的长度更改为190 mm,对于160 mm的长度可获得最佳性能。 (C)2017年美国土木工程师学会。

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