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Performance Analysis of Constant-Pressure Pumped Hydro Combined with Compressed Air Energy Storage System Considering Off-Design Model of Compressor

机译:考虑压缩机偏移设计模型的压缩空气储能系统恒压泵浦水电性能分析

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摘要

With the wide application of renewable energy, energy storage technology has become a research hotspot. In order to overcome the shortcomings of energy loss caused by compression heating in compressed air energy storage technology, a novel constant-pressure pumped hydro combined with compressed air energy storage system was proposed. To deepen the understanding of the system and make the analysis closer to reality, this paper adopted an off-design model of the compressor to calculate and analyze the effect of key parameters on system thermodynamics performance. In addition, the results of this paper were compared with previous research results, and it was found that the current efficiency considering the off-design model of compressor was generally 2% - 5% higher than the previous efficiency. With increased preset pressure or with decreased terminal pressure, both the previous efficiency and current efficiency of the system increased. The exergy destruction coefficient of the throttle valve reached 4%. System efficiency was more sensitive to changes in water pump efficiency and hydroturbine efficiency.
机译:随着可再生能源的广泛应用,储能技术已成为研究热点。为了克服压缩空气储能技术压缩加热引起的能量损失的缺点,提出了一种与压缩空气储能系统的新型恒压泵浦水电。为了加深对系统的理解并使分析更接近现实,本文采用了压缩机的非设计模型,以计算和分析关键参数对系统热力学性能的影响。此外,将本文的结果与先前的研究结果进行了比较,发现考虑压缩机非设计模型的电流效率通常比以前的效率高2% - 5%。随着预设压力的增加或终端压力降低,系统的先前效率和电流效率都增加了。节流阀的漏极破坏系数达到4%。系统效率对水泵效率和水闸效率的变化更敏感。

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