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Conventional and advanced exergy analysis of a grid connected underwater compressed air energy storage facility

机译:网格连接水下压缩空气储能设施的常规和先进的漏洞分析

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摘要

A data driven exergy analysis has been conducted for the first known grid connected Underwater Compressed Air Energy Storage facility, located in Toronto, Canada. Further to examining the plant through conventional exergy analysis, results were enhanced by splitting exergy destruction rates into avoidable and unavoidable, as well as endogenous and exogenous parts via advanced exergy analysis. The conventional exergy analysis showed that under real operational conditions, the exergy destruction ratio was 47.1%, while under the theoretical unavoidable operational conditions it could be reduced to 15.9%. The overall outcome of the conventional exergy analysis was confirmed by the advanced exergy analysis, the details, however, were quite different. The results of advanced exergy analysis assigned the improvement priority to heat exchanger 4, followed by the turbine and the stage 3 compressor. Conversely, the conventional exergy analysis indicated that the total exergy destruction of the turbine was higher than that for heat exchanger 3. The advanced exergy analysis also revealed that 76.4% of the exergy destruction was avoidable, highlighting the significant potential of the system for performance improvement.
机译:已经为第一个已知网格连接的水下压缩空气能量存储设施进行了数据驱动的Deerteny分析,位于加拿大多伦多。进一步通过常规的漏洞分析检查植物,通过先进的Deerteny分析将Deertgy的破坏率分解到可避免的和不可避免的和外源性部分,通过分离出漏洞的破坏率来提高结果。常规的漏洞分析表明,在实际运行条件下,出境的破坏率为47.1%,而在理论不可避免的运营条件下,它可能降至15.9%。通过先进的漏洞分析证实了常规漏洞分析的总体结果,但细节是完全不同的。先进的Deergy分析结果为热交换器4分配了改进优先级,其次是涡轮机和级压缩机。相反,常规的漏洞分析表明,涡轮机的总漏洞销毁高于热交换器3的漏洞3.先进的漏洞分析还透露,76.4%的漏洞破坏是可避免的,突出了系统性能改善的重要潜力。

著录项

  • 来源
    《Applied Energy》 |2019年第1284期|1198-1208|共11页
  • 作者单位

    Univ Windsor Ed Lumley Ctr Engn Innovat Turbulence & Energy Lab 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Univ Windsor Ed Lumley Ctr Engn Innovat Turbulence & Energy Lab 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Univ Windsor Ed Lumley Ctr Engn Innovat Turbulence & Energy Lab 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Hydrostor Inc 300-365 Bay St Toronto ON M5H 2V1 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UWCAES; Exergy analysis; Exergy destruction components; Energy storage;

    机译:UWCAES;Deergy分析;漏洞破坏组件;能量存储;
  • 入库时间 2022-08-18 22:22:41

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