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一种与燃煤电厂相结合的新型压缩空气储能系统的热力学评估与敏感性分析

Thermodynamic Evaluation and Sensitivity Analysis of a Novel Compressed Air Energy Storage System Incorporated with a Coal-Fired Power Plant.

作者信息

Pan Peiyuan, Zhang Meiyan, Peng Weike, Chen Heng, Xu Gang, Liu Tong

机构信息

Beijing Key Laboratory of Emission Surveillance and Control for Thermal Power Generation, North China Electric Power University, Beijing 102206, China.

出版信息

Entropy (Basel). 2020 Nov 18;22(11):1316. doi: 10.3390/e22111316.

Abstract

A novel compressed air energy storage (CAES) system has been developed, which is innovatively integrated with a coal-fired power plant based on its feedwater heating system. In the hybrid design, the compression heat of the CAES system is transferred to the feedwater of the coal power plant, and the compressed air before the expanders is heated by the feedwater taken from the coal power plant. Furthermore, the exhaust air of the expanders is employed to warm partial feedwater of the coal power plant. Via the suggested integration, the thermal energy storage equipment for a regular CAES system can be eliminated and the performance of the CAES system can be improved. Based on a 350 MW supercritical coal power plant, the proposed concept was thermodynamically evaluated, and the results indicate that the round-trip efficiency and exergy efficiency of the new CAES system can reach 64.08% and 70.01%, respectively. Besides, a sensitivity analysis was conducted to examine the effects of ambient temperature, air storage pressure, expander inlet temperature, and coal power load on the performance of the CAES system. The above work proves that the novel design is efficient under various conditions, providing important insights into the development of CAES technology.

摘要

一种新型压缩空气储能(CAES)系统已被开发出来,它基于燃煤电厂的给水加热系统与燃煤电厂进行了创新集成。在这种混合设计中,CAES系统的压缩热被传递到燃煤电厂的给水中,膨胀机前的压缩空气由取自燃煤电厂的给水加热。此外,膨胀机的排气用于加热燃煤电厂的部分给水。通过这种建议的集成方式,可以省去常规CAES系统的热能存储设备,并提高CAES系统的性能。基于一个350兆瓦的超临界燃煤电厂,对所提出的概念进行了热力评估,结果表明新CAES系统的往返效率和㶲效率分别可达64.08%和70.01%。此外,还进行了敏感性分析,以研究环境温度、空气储存压力、膨胀机入口温度和燃煤电厂负荷对CAES系统性能的影响。上述工作证明了这种新颖设计在各种条件下都是高效的,为CAES技术的发展提供了重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c2/7711495/5c6a4d809832/entropy-22-01316-g0A1a.jpg

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