1. 华北电力大学 能源动力与机械工程学院,北京,102206
2. 国网北京昌平供电公司,北京,102200
[ "张润之(2001—),男,河南鹤壁人,硕士研究生,研究方向为新能源及氢能综合利用,E-mail:ncepu_zrz@163.com" ]
网络出版:2025-03-15,
纸质出版:2025
移动端阅览
张润之,周家辉,徐钢,张文韬,王珞珈. 峰谷电价场景下并网型风光制氢合成氨系统的容量-调度优化分析动力工程学报, 2025, 45(3): 443-451 https://doi.
org/10.19805/j.cnki.jcspe.2025.230717
张润之,周家辉,徐钢,张文韬,王珞珈. 峰谷电价场景下并网型风光制氢合成氨系统的容量-调度优化分析动力工程学报, 2025, 45(3): 443-451 https://doi. DOI: 10.19805/j.cnki.jcspe.2025.230717.
org/10.19805/j.cnki.jcspe.2025.230717 DOI:
为解决新能源消纳和氢能源存储、运输、利用难题
提出一种并网型风光制氢合成氨系统。基于全年风光真实数据
以系统总收益最大为优化目标构建了系统的数学模型
并通过混合整数线性规划算法
确定系统最佳设备容量与运行调度方案。结果表明:该新型系统能够依据风光资源及电价的变化
合理切换工作状态
实现系统能量平衡;在满足各项约束条件下
可再生能源利用率提高
系统制氨的平准化成本降低。
To address issues of new energy accommodation and hydrogen energy storage
transportation and utilization
a grid-connected wind-solar hydrogen production and ammonia synthesis system was proposed. Based on the real data of wind and solar power throughout a year
a mathematical model of the system was developed with the optimization goal of maximizing the total system revenue. The optimal equipment capacity and operation scheduling plan of the system were determined with a mixed integer linear programming algorithm. Results show that the proposed new system can switch working states reasonably and achieve energy balance according to changes in wind and solar resources and electricity prices. Under the condition of satisfying various constraints
the utilization rate of renewable energy is improved
and the levelized cost of system ammonia production is reduced.
陆王琳, 陆启亮, 张志洪. 碳中和背景下综合智慧能源发展趋势[J]. 动力工程学报, 2022, 42(1): 10-18. LU Wanglin, LU Qiliang, ZHANG Zhihong. An overview of the integrated energy systems' development under the background of carbon neutralization[J]. Journal of Chinese Society of Power Engineering, 2022, 42(1): 10-18.
李丽旻. 光伏、风电成可再生能源增长主力[N]. 中国能源报, 2023-04-03(005).
潘玲颖, 陈锦奇, 柴博涵. "双碳"目标下新能源发电产业集聚对区域绿色发展的影响研究[J]. 动力工程学报, 2022, 42(11): 1051-1060. PAN Lingying, CHEN Jinqi, CHAI Bohan. Research on the impact of new energy power generation industry agglomeration on regional green economic efficiency[J]. Journal of Chinese Society of Power Engineering, 2022, 42(11): 1051-1060.
李晨鹏, 李政, 刘培, 等. 应用无碳氨的氨煤混燃机组平准化电力成本计算[J]. 动力工程学报, 2022, 42(11): 1042-1050. LI Chenpeng, LI Zheng, LIU Pei, et al. Levelized cost calculation of electricity in ammonia-coal co-combustion unit using green ammonia[J]. Journal of Chinese Society of Power Engineering, 2022, 42(11): 1042-1050.
林今, 余志鹏, 张信真, 等. 可再生能源电制氢合成氨系统的并/离网运行方式与经济性分析[J]. 中国电机工程学报, 2024, 44(1): 117-126. LIN Jin, YU Zhipeng, ZHANG Xinzhen, et al. On-grid/off-grid operation mode and economic analysis of renewable power to ammonia system[J]. Proceedings of the CSEE, 2024, 44(1): 117-126.
杨鹏威, 于琳竹, 王放放, 等. 氨储能在新型电力系统的应用前景、挑战及发展[J]. 化工进展, 2023, 42(8): 4432-4446. YANG Pengwei, YU Linzhu, WANG Fangfang, et al. Application prospect, challenge and development of ammonia energy storage in new power system[J]. Chemical Industry and Engineering Progress, 2023, 42(8): 4432-4446.
李卫东, 李逸龙, 滕霖, 等. "双碳"目标下的氨能技术与经济性研究进展[J]. 化工进展, 2023, 42(12): 6226-6238. LI Weidong, LI Yilong, TENG Lin, et al. Research progress on ammonia energy technology and economy under "carbon emission peak" and "carbon neutrality" targets[J]. Chemical Industry and Engineering Progress, 2023, 42(12): 6226-6238.
李志军, 刘京京, 陈爱琴, 等. 可再生能源转化为氨氢能源体系技术和经济性分析[J]. 上海节能, 2022(9): 1125-1131. LI Zhijun, LIU Jingjing, CHEN Aiqin, et al. Technical and economic analysis on renewable energy conversion to ammonia hydrogen energy system[J]. Shanghai Energy Saving, 2022(9): 1125-1131.
王明华. 氢能储运技术经济性分析及建立绿氨储运基地设想[J]. 现代化工, 2023, 43(6): 1-5. WANG Minghua. Economic analysis on hydrogen energy storage and transportation technologies and tentative plan in establishing a green ammonia storage-transportation base[J]. Modern Chemical Industry, 2023, 43(6): 1-5.
韩子娇, 李正文, 张文达, 等. 计及光伏出力不确定性的氢能综合能源系统经济运行策略[J]. 电力自动化设备, 2021, 41(10): 99-106. HAN Zijiao, LI Zhengwen, ZHANG Wenda, et al. Economic operation strategy of hydrogen integrated energy system considering uncertainty of photovoltaic output power[J]. Electric Power Automation Equipment, 2021, 41(10): 99-106.
刘忠, 张乐, 寇攀高, 等. 并网型风电-光伏-抽水蓄能-蓄电池系统容量优化配置[J]. 动力工程学报, 2023, 43(9): 1151-1159. LIU Zhong, ZHANG Le, KOU Pangao, et al. Capacity allocation optimization on grid connected system consisting of wind power, photovoltaic power, pumped storage and battery[J]. Journal of Chinese Society of Power Engineering, 2023, 43(9): 1151-1159.
程昭龙, 李鸿奎, 李福建, 等. 考虑风电光伏出力不确定性的多目标最优潮流[J]. 自动化技术与应用, 2021, 40(10): 11-16. CHENG Zhaolong, LI Hongkui, LI Fujian, et al. Multi objective optimal power flow based on wind power photovoltage output uncertainty[J]. Techniques of Automation and Applications, 2021, 40(10): 11-16.
ZHENG Yi, YOU Shi, BINDNER H W, et al. Optimal day-ahead dispatch of an alkaline electrolyser system concerning thermal-electric properties and state-transitional dynamics[J]. Applied Energy, 2022, 307: 118091.
VARELA C, MOSTAFA M, ZONDERVAN E. Modeling alkaline water electrolysis for power-to-x applications: a scheduling approach[J]. International Journal of Hydrogen Energy, 2021, 46(14): 9303-9313.
NOWICKI D A, AGNEW G D, IRVINE J T S. Green ammonia production via the integration of a solid oxide electrolyser and a Haber-Bosch loop with a series of solid electrolyte oxygen pumps[J]. Energy Conversion and Management, 2023, 280: 116816.
周步祥, 朱文聪, 朱杰, 等. 风光制氢合成氨系统的多时段可调度域分析[J]. 中国电机工程学报, 2024, 44(1): 160-173. ZHOU Buxiang, ZHU Wencong, ZHU Jie, et al. Multi-stage dispatchable region analysis of wind and solar power-based hydrogen production and ammonia synthesis system[J]. Proceedings of the CSEE, 2024, 44(1): 160-173.
刘康祥, 周家辉, 徐钢, 等. 面向高比例可再生能源消纳的光储氢醇一体化系统规划与调度[J]. 动力工程学报, 2023, 43(11): 1477-1486. LIU Kangxiang, ZHOU Jiahui, XU Gang, et al. Planning and scheduling of integrated system of light hydrogen storage and methanol for high proportion of renewable energy consumption[J]. Journal of Chinese Society of Power Engineering, 2023, 43(11): 1477-1486.
高明非, 张策, 解彤, 等. 考虑风光消纳的综合能源系统多元储能优化配置方法[J]. 动力工程学报, 2023, 43(6): 796-804. GAO Mingfei, ZHANG Ce, JIE Tong, et al. Multiple energy storage optimal configuration method for comprehensive energy system considering wind/photovoltaic power accommodation[J]. Journal of Chinese Society of Power Engineering, 2023, 43(6): 796-804.
孙惠娟, 阙炜新, 彭春华. 考虑电氢耦合和碳交易的电氢能源系统置信间隙鲁棒规划[J]. 电网技术, 2023, 47(11): 4477-4487. SUN Huijuan, QUE Weixin, PENG Chunhua. Confidence gap robust planning of electricity and hydrogen energy system considering electricity-hydrogen coupling and carbon trading[J]. Power System Technology, 2023, 47(11): 4477-4487.
ZHANG Hanfei, WANG Ligang, VAN HERLE J, et al. Techno-economic comparison of green ammonia production processes[J]. Applied Energy, 2020, 259: 114135.
李艳梅, 任恒君, 张致远, 等. 考虑储能系统调度与风电消纳的峰谷分时电价优化模型研究[J]. 电网技术, 2022, 46(11): 4141-4149. LI Yanmei, REN Hengjun, ZHANG Zhiyuan, et al. Optimization model of peak-valley time-of-use electricity prices considering energy storage system dispatching and wind power consumption[J]. Power System Technology, 2022, 46(11): 4141-4149.
SOLLAI S, PORCU A, TOLA V, et al. Renewable methanol production from green hydrogen and captured CO2: a techno-economic assessment[J]. Journal of CO2 Utilization, 2023, 68: 102345.
GU Yu, WANG Danfeng, CHEN Qianqian, et al. Techno-economic analysis of green methanol plant with optimal design of renewable hydrogen production: a case study in China[J]. International Journal of Hydrogen Energy, 2022, 47(8): 5085-5100.
余潜跃, 张玉琼, 赵强, 等. 综合能源生产单元的全生命周期碳足迹评价与技术经济性评估[J]. 中国电机工程学报, 2024, 44(8): 3115-3124. YU Qianyue, ZHANG Yuqiong, ZHAO Qiang, et al. Life-cycle carbon footprint assessment and techno-economic analysis of integrated energy production unit[J]. Proceedings of the CSEE, 2024, 44(8): 3115-3124.
0
浏览量
29
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621