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Experimental investigation on small capacity compressed air energy storage towards efficient utilization of renewable sources

机译:小容量压缩空气储能有效利用可再生资源的实验研究

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Energy storage has become a matter of great concern in the increasing Renewable Energy (RE) scenario and it plays a vital role in the renewable based micro and nano grids. Among the various energy storage systems, Compressed Air Energy Storage (CAES) system has received the attention of scientists during the recent years due to its long life cycle and the scope and potential of increasing roundtrip efficiency by introducing the concept of polygeneration along with other recent inventions in this technology. In the present work, an experimental investigation has been carried out on small capacity CAES system by constructing a 400 L capacity storage tank and the round trip efficiency is quantified by conducting several charging and discharging experiments. The results reveal that the expander efficiency is 41.79%, 54.25% and 68.3% for the mass flow rates of 0.005 kg/s, 0.0075 kg/s and 0.01 kg/s respectively and the roundtrip efficiency was 13.4%, 17.4% and 22.02% for the mass flow rates of 0.005 kg/s, 0.0075 kg/s and 0.01 kg/s respectively.
机译:在不断增长的可再生能源(RE)场景中,储能已经成为人们非常关注的问题,它在基于可再生能源的微型和纳米电网中起着至关重要的作用。在各种储能系统中,压缩空气储能(CAES)系统由于其较长的生命周期以及通过引入多联产的概念以及其他近代技术而带来的往返效率提高的范围和潜力,近年来受到了科学家的关注。这项技术的发明。在目前的工作中,通过构造一个400 L的储罐,对小容量CAES系统进行了实验研究,并通过进行多次充电和放电实验来量化往返效率。结果表明,质量流量为0.005 kg / s,0.0075 kg / s和0.01 kg / s时,膨胀机效率分别为41.79%,54.25%和68.3%,往返效率分别为13.4%,17.4%和22.02%质量流量分别为0.005 kg / s,0.0075 kg / s和0.01 kg / s。

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