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压缩空气储能示范进展及商业应用场景综述

Review on Demonstration Progress and Commercial Application Scenarios of Compressed Air Energy Storage System

  • 摘要:
        目的   近年来,储能技术及储能产业发展受到的关注度持续升温。
        方法   在此背景下,对压缩空气储能技术及其商业应用场景进行了分析与综述。通过梳理国内致力于压缩空气储能技术示范的研究团队及其技术特点,较为全面地反映了国内压缩空气储能技术的发展方向;在此基础上,介绍了已投运数十年的德国汉特福及美国阿拉巴马州两座商业化压缩空气储能电站的配置参数及运行经验,综述了近年来国内外针对多种新型压缩空气储能技术的示范进展状况。结合压缩空气储能技术梳理、商业化储能电站回顾及新型压缩空气储能技术示范进展综述三方面的工作,可为国内压缩空气储能技术发展及国家多部委大力推动的储能行业发展提供借鉴。最后,从电源侧储能、电网侧储能及用户侧储能三类应用场景分析了压缩空气储能技术的适应性及应用潜力。
        结果   德国及美国两座商业化压缩空气储能电站数十年的可靠运行经验,检验了压缩空气储能电站长期运行的可靠性。与此同时,国内自500 kW至10 MW等多容量规模压缩空气储能示范工程的先后投建,表明此项储能技术在国内已实现由理论研究阶段向示范验证阶段的突破。
        结论   在当下政策环境,用户侧峰谷电价政策是较为典型的储能应用场景边界条件,在压缩空气储能技术推广中可以重点考虑。

     

    Abstract:
        Introduction   In recent years, the attention paid to the development of energy storage technology and energy storage industry has continued to heat up.
        Method   Review of compressed air energy storage technology (CAES) progress and its commercial application scenarios have been summarized in this paper. CAES research teams and their technical characteristics were summarized, which reflected the development direction of CAES technology. Meanwhile, the configuration parameters and operation experience of two commercial CAES power stations (Huntorf station and Alabama station) were introduced. The demonstration progress of various new CAES technologies was also reviewed. These review on CAES technologies, commercial power stations and demonstration stations can provide reference for the development of domestic CAES technology and the development of energy storage industry promoted by national ministries in China. At the end of this paper, the adaptability and application potential of CAES technology were analyzed from three aspects: electricity generation side energy storage, grid side energy storage and user side energy storage.
        Result   The two CAES power stations in Germany and the United States have tested the long-term reliability of CAES power plants. The CAES demonstration projects with capacity from 500 kW to 10 MW have been built in China. It indicates that this energy storage technology has achieved breakthroughs from the theoretical research stage to the demonstration verification stage in China.
        Conclusion   In the current policy environment, the user-side peak-to-valley electricity price policy is a typical boundary condition for energy storage application scenarios, which can be considered in the application of CAES technology.

     

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