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Performance of a coupled transpired solar collector-phase change material-based thermal energy storage system

机译:耦合式太阳能集热器相变材料储热系统的性能

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The transpired solar collector (TSC) is a low-cost technology for heating ventilation air for mainly for use in industrial and agricultural applications. Storing the excess energy generated during daytime in phase change material (PCM) could improve the economics of using TSCs. Since energy generated for storage could be increased by using a two-stage TSC (with a glazing) vs. a one-stage TSC, first, the thermal performance of the two configurations were compared. Then, performance of the PCM-based thermal energy storage (TES) unit coupled to a TSC was evaluated. At a suction velocity of 0.023 m/s, the one stage TSC produced a 2 degrees C higher temperature rise and 8% higher efficiency than the two-stage TSC. The one-stage TSC was coupled to a TES unit packed with 80 kg of salt-hydrate type PCM (specific energy of similar to 185 kJ/kg). When evaluated at four airflow rates, the TES unit stored between 76 and 107% of its theoretical heat storage capacity and provided tempered air 4 degrees C warmer than ambient air during nighttime. While residual energy (for daytime heating) increased with airflow rate, energy charged or discharged was unaffected. Over a week, the TSC-TEC stored 34% of the total useful energy produced for nighttime use, with a potential to displace 1.35 kg of liquefied natural gas. Replacing the expensive metal TSC with a perforated plastic TSC and a simpler TES design would improve the economics of storing solar energy for use after sundown. (C) 2017 Elsevier B.V. All rights reserved.
机译:蒸发式太阳能集热器(TSC)是一种用于加热通风空气的低成本技术,主要用于工业和农业应用。将白天产生的多余能量存储在相变材料(PCM)中可以提高使用TSC的经济性。由于可以通过使用两阶段TSC(带有玻璃窗)和一阶段TSC来增加存储能量,因此,首先比较了两种配置的热性能。然后,评估了与TSC耦合的基于PCM的热能存储(TES)单元的性能。在吸气速度为0.023 m / s的情况下,一级TSC的温度升高比二级TSC高2摄氏度,效率提高8%。将一级TSC耦合到装有80千克盐水化合物型PCM(比能类似于185 kJ / kg)的TES装置。在四种气流速率下进行评估时,TES单元在夜间存储了其理论储热容量的76%至107%,并在夜间向环境空气提供了比环境空气高4摄氏度的回火空气。尽管剩余能量(用于日间取暖)随气流速度增加,但充电或放电的能量不受影响。在一周的时间里,TSC-TEC储存了夜间生产的总有用能源的34%,有潜力取代1.35公斤的液化天然气。用带孔的塑料TSC和更简单的TES设计代替昂贵的金属TSC,可以提高日落后储存太阳能的经济性。 (C)2017 Elsevier B.V.保留所有权利。

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