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首页> 外文期刊>International Journal of Renewable Energy Development >Residential Air Conditioning System Integrated with Packed Bed Cool Storage Unit for Promoting Rooftop Solar PV Power Generation
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Residential Air Conditioning System Integrated with Packed Bed Cool Storage Unit for Promoting Rooftop Solar PV Power Generation

机译:住宅空调系统与填充床冷却储存单元集成,用于促进屋顶太阳能光伏发电

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The increase in the share of renewable-based power in the gross power generation in most countries causes significant concerns over the addition of renewable power with the grid, results in stability issues in most developed nations. Energy storage is an emerging technology that is considered the ultimate solution in developing microgrids with distributed renewable power generation. The cool thermal storage plays a vital role in economically promoting renewable power among different storage units. The major objective of the research work is to demonstrate the integration of residential air-conditioning systems with packed bed cool storage units to promote rooftop solar power generation for residential space cooling applications. In order to achieve the said objective, an experimental investigation was made to study the charging/discharging characteristics of a packed bed cool-storage unit combined with a chiller and a cooling coil unit suitable for small capacity air-conditioning applications. The system consists of encapsulated spherical capsules filled with a phase change material blended with distilled water and pseudomonas (nucleating agent) and the heat transfer fluid as a combination of distilled water and Mono-ethylene glycol. A cooling coil unit was connected to the cool-storage tank to transfer cool energy from the storage tank to the space to be cooled when there is a demand. The important parameters, such as instantaneous and cumulative heat transfer during the charging/discharging processes, are presented. The average COP values of the chiller during the charging operation were estimated as 1, 0.93, and 0.89 when the HTF setpoint temperatures were -6°C, -9°C, and -12°C, which shows a decrease in performance as the setpoint temperature decreases. During the discharging process, a cooling load of 2.25 kW is obtained during the first cycle of operation and gradually reduces to 0.3 kW during the sixth cycle of operation. The increase in the HTF temperature during each cycle of operation indicates that the Phase Change Material (PCM) in the balls cannot release the heat as per the demand after a certain period of discharging. Hence, decreasing the internal thermal resistance by suitable measures is essential to achieve uniform heat flux and to operate the system successfully.
机译:在大多数国家的毛源性发电中,可再生能力份额的增加导致对网格的可再生能力的显着担忧,导致大多数发达国家的稳定性问题。能量存储是一种新兴技术,被认为是用分布式可再生能源发电开发微电网的最终解决方案。酷热存储在经济地促进不同存储单元之间的可再生能力方面起着至关重要的作用。研究工作的主要目标是展示住宅空调系统与填充床酷储物单元的整合,以促进屋顶太阳能发电,以进行住宅空间冷却应用。为了实现上述目的,进行了一种实验研究,研究了与冷却器和用于小容量空调应用的冷却器和冷却线圈单元的填充床凉爽储存单元的充电/放电特性。该系统由封装的球形胶囊组成,该封装的球形胶囊填充有与蒸馏水和假单胞菌(成核剂)和蒸馏水和单乙二醇组合的传热流体混合的相变材料。冷却线圈单元连接到冷却储罐,以在需要时将冷却从储罐转移到待冷却的空间。提出了在充电/放电过程中的瞬时和累积热传递的重要参数。当HTF设定点温度为-6°C,-9°C和-12°C时,在充电操作期间冷却器的平均COP值估计为1,0.93和0.89,这表明性能下降了设定点温度降低。在放电过程中,在操作的第一循环期间获得2.25kW的冷却负载,并且在第六循环期间逐渐减小到0.3kW。每个操作循环期间HTF温度的增加表明球中的相变材料(PCM)在一定时期后,球中的相变材料不能释放热量。因此,通过合适的措施降低内部热阻对于实现均匀的热通量并成功地操作系统是必不可少的。

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