中国电力 ›› 2024, Vol. 57 ›› Issue (2): 183-193.DOI: 10.11930/j.issn.1004-9649.202210011

• 新能源 • 上一篇    下一篇

考虑碳交易机制与氢混天然气的园区综合能源系统调度策略

张栋顺1(), 全恒立1(), 谢桦2(), 许志鸿2, 陶雅芸1, 王慧圣1   

  1. 1. 国核电力规划设计研究院有限公司,北京 100094
    2. 北京交通大学 电气工程学院,北京 100044
  • 收稿日期:2022-10-08 出版日期:2024-02-28 发布日期:2024-02-28
  • 作者简介:张栋顺(1981—),男,高级工程师,从事氢能与综合智慧能源,E-mail:10836305@qq.com
    全恒立(1986—),男,高级工程师, 从事储能、氢能、微电网集成应用技术,E-mail:quanhengli@snpdri.com
    谢桦(1970—),女,通信作者,副教授,博士生导师,从事储能规划与控制、综合能源系统优化调度,E-mail:hxie@bjtu.ALKu.cn
  • 基金资助:
    国核电力规划设计研究院有限公司科技项目(KYTC2020ZH06)。

Dispatching Strategy of Park-Level Integrated Energy System Considering Carbon Trading Mechanism and Hydrogen Blending Natural Gas

Dongshun ZHANG1(), Hengli QUAN1(), Hua XIE2(), Zhihong XU2, Yayun TAO1, Huisheng WANG1   

  1. 1. State Nuclear Electric Power Planning Design & Research Institute, Beijing 100094, China
    2. School of Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China
  • Received:2022-10-08 Online:2024-02-28 Published:2024-02-28
  • Supported by:
    This work is supported by State Nuclear Electric Power Planning Design & Research Institute (No.KYTC2020ZH06).

摘要:

综合能源系统有利于实现多能互济、能源高效利用。以含电、热、冷、氢负荷的园区综合能源系统为研究对象,分析了可再生能源制氢系统及掺氢燃气轮机运行中多种能源的耦合及梯级利用特性,考虑了掺氢比对燃气轮机效率以及热电比的影响,以系统运行成本最小为目标函数,建立了阶梯式碳交易机制下的园区综合能源系统优化调度模型。采用分段线性化和大M法将包含多个0–1变量和连续变量的非线性模型转化为混合整数规划模型,并调用Cplex求解器实现快速求解。算例分析表明,所提调度策略可有效提高园区能源系统运行经济性,合理调控燃气轮机掺氢比有利于降低园区系统的碳排放。

关键词: 综合能源系统, 掺氢比, 优化调度, 运行经济性, 碳交易机制

Abstract:

The integrated energy system is conducive to the realization of multi-energy mutual benefit and efficient use of energy. This paper focuses on a comprehensive energy system in a park that incorporates electricity, heat, cold, and hydrogen loads. The study analyzes the coupling and cascade utilization characteristics of multiple energy sources in the operation of a renewable energy hydrogen production system and hydrogen-blended gas turbine. The impact of hydrogen blending ratio on gas turbine efficiency and the thermoelectric ratio is considered. With the objective of minimizing the operational cost of the system, an optimization and dispatching model for the park’s comprehensive energy system is established under a tiered carbon trading mechanism. Segmented linearization and the big M method are employed to transform a nonlinear model containing multiple 0-1 variables and continuous variables into a mixed-integer programming model. The model is then solved using the Cplex solver to achieve fast solutions. Case analysis shows that the dispatching strategy designed in this paper can effectively improve the economic performance of the park’s energy system. Properly controlling the hydrogen blending ratio in gas turbine helps reduce carbon emission in the park’s system.

Key words: integrated energy system, hydrogen blending ratio, optimal dispatch, operation economy, carbon trading mechanism