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Experimental investigation on phase change material based thermal storage system for solar air heating applications

机译:基于相变材料的储热系统在太阳能空气加热中的实验研究

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摘要

Many types of solar air heaters have been developed in India and their performance has been studied in detail. In solar dryers the drying process largely depends on the varying local weather conditions, resulting in a poor quality of the dried product. To eliminate the fluctuations in the temperature of the hot air, solar collectors are integrated with the Phase Change Material (PCM) based thermal storage unit. The present study is aimed at investigating the feasibility of using a latent heat storage unit with HS 58, an inorganic salt based phase change material, to store the excess solar energy, and release it when the energy availability is inadequate during poor weather conditions, and to extend the period of utilisation beyond the sunshine hours. Experiments were conducted to evaluate the charging and discharging characteristics of the storage unit. The effects of inlet flow rate during the charging and discharging processes were measured and reported. For the storage tank configuration and PCM ball size considered in the present investigation, the mass flow rate of 200 kg/h is able to provide a near uniform rate of heat transfer during charging and discharging processes. Further, low mass flow rate is able to utilise the maximum capacity of the storage system and to supply heat for a longer duration.
机译:印度已经开发出许多类型的太阳能空气加热器,并且已经对其性能进行了详细的研究。在太阳能干燥机中,干燥过程很大程度上取决于变化的当地天气条件,从而导致干燥产品的质量较差。为了消除热空气温度的波动,太阳能收集器与基于相变材料(PCM)的储热单元集成在一起。本研究旨在调查使用带有HS 58的潜热存储单元(基于无机盐的相变材料)来存储多余的太阳能,并在恶劣天气条件下当能量不足时将其释放的可行性,以及将使用期限延长到日照时间以外。进行实验以评估存储单元的充电和放电特性。测量并报告了进气流速在充电和放电过程中的影响。对于本研究中考虑的储罐配置和PCM球尺寸,200 kg / h的质量流量能够在充电和放电过程中提供几乎均匀的热传递速率。此外,低质量流率能够利用存储系统的最大容量,并能提供较长时间的热量。

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