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Open Access Article

Journal of Electrical Engineering and Automation. 2023; 2: (3) ; 24-27 ; DOI: 10.12208/j.jeea.20230019.

Exploring the development of pumped storage energy under the implementation of the "dual carbon" goal
“双碳”目标实现下的抽水蓄能发展探究

作者: 王兴隆 *, 孔繁臣, 韩四保, 田逸群

内蒙古赤峰抽水蓄能有限公司 内蒙古赤峰

*通讯作者: 王兴隆,单位:内蒙古赤峰抽水蓄能有限公司 内蒙古赤峰;

发布时间: 2023-06-25 总浏览量: 342

摘要

“双碳”目标下,清洁能源得到快速发展,由于风力发电和光力发电的时断时续、不稳定,因此,将其纳入电网会给电网带来很大的影响,为了保证系统的安全和稳定,必须建立一座与风力发电、光力发电相结合的抽水蓄能电站。除此之外,由于可再生能源具有随机性和不稳定性的特点,这给电网安全稳定运行带来了极大的不利影响。为了确保电力系统的安全可靠,必须提供足够的可调整电源。本课题以山区为研究区域,对于推动山区经济发展,巩固脱贫成果,实现城乡共同富裕,具有重要的现实和历史意义。在我国大力发展抽水蓄能电站的过程中,应该从根本上解决制约其健康发展的各种问题,推动一股促进抽水蓄能电站快速、有序、高效、健康发展的建设潮流。

关键词: 抽水蓄能电站;风电;光电;改建

Abstract

Under the “Double carbon” target, clean energy has been developed rapidly. As wind and solar power are intermittent and unstable, so integrating clean energy into the grid will have a big impact on the grid. In order to ensure the safety and stability of the system, it is necessary to build a pumped-storage hydroelectricity combined with wind power and solar power. In addition, due to the random and unstable nature of renewable energy, this brings a great negative impact on the safe and stable operation of the power grid. In order to ensure the safety and reliability of the power system, sufficient adjustable power must be provided. The location of the project is located in the mountain area, which is of great realistic and historical significance to promote the economic development, consolidate the achievements of poverty alleviation and realize the common prosperity of urban and rural areas. While developing pumped-storage hydroelectricity, our country should fundamentally solve the problems that restrict its healthy development and promote the construction upsurge of rapid, orderly, orderly, efficient and healthy development of pumped-storage power stations.

Key words: Pumped storage power station; Wind power; Photoelectricity; Reconstruction

参考文献 References

[1] 夏婷,郑声安,任艳,韩冬.全球重点国家和区域水电开发程度对标分析[J].水力发电学报,2022,41(05):1-11.

[2] 王毅,王慷,王小军,赵增涛,余涛,冯淼永,黄俊杰,杨宁.抽水蓄能机组全生命周期成本建模、估算与系统开发[J].电力信息与通信技术,2023,21(01):71-77.

[3] 唐凯,蒋茂庆,杨东东,聂锦杰,李宁,易小莎.抽水蓄能电站总价项目设置及结算方式研究[J].吉林水利, 2023 (01): 56-59+73.

[4] 王振明,肖广磊.“双碳”目标下的抽水蓄能电站发展研究[J].吉林水利,2023(01):52-55.

[5] 韩飞.抽水蓄能电站机电设备安装技术管理[J].人民珠江,2022,43(S2):68-71+92.

[6] 叶宏.抽水蓄能服务新型电力系统研究[J].水电与抽水蓄能,2022,8(06):2-3.

[7] 张德强.浅析抽水蓄能电站GIS选址与设备安装[J].储能科学与技术,2022,11(12):4100-4101.

[8] 欧阳婷,蔡晔,王炜宇,唐夏菲,谭玉东.计及风电、光伏预测不确定性的抽水蓄能日前全调度优化[J].综合智慧能源,2022,44(11):20-27.

[9] 白苏,白云飞,袁骏,刘哲,高艺.碳中和目标下可再生能源匮乏型国家电力发展研究——以新加坡为例[J].全球能源互联网,2022,5(04):398-408.

[10] 郭敏晓,王笑棠,徐非非,徐文军,杨宏伟.立足“两水”优势促进绿色发展——丽水市能源战略研究[J].中国能源,2022,44(06):62-68.

[11] 杨楠.双碳政策下的电力工程发展机遇[J].国际工程与劳务,2022(06):69-70.

[12] 张婷婷.“碳中和”下中国风电发展的稀土需求预测及环境成本研究[D].山东大学,2022.

[13] 周原冰,杨方,余潇潇,江涵.中国能源电力碳中和实现路径及实施关键问题[J].中国电力,2022,55(05):1-11.

[14] 刘芳芳.“双碳”目标[J].国家电网,2022(01):26-29.

[15] 姜红丽,刘羽茜,冯一铭,周保中,李昱曦.碳达峰、碳中和背景下“十四五”时期发电技术趋势分析[J].发电技术,2022,43(01):54-64.

引用本文

王兴隆, 孔繁臣, 韩四保, 田逸群, “双碳”目标实现下的抽水蓄能发展探究[J]. 电气工程与自动化, 2023; 2: (3) : 24-27.