引用本文:孙璐瑶,陈来军,熊宇峰,李笑竹,梅生伟.考虑光热集热单元的氢储能热电联供综合能源系统容量优化配置[J].电力自动化设备,2023,43(12):70-76
SUN Luyao,CHEN Laijun,XIONG Yufeng,LI Xiaozhu,MEI Shengwei.Capacity optimization configuration of hydrogen energy storage cogeneration integrated energy system considering photothermal collector module[J].Electric Power Automation Equipment,2023,43(12):70-76
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考虑光热集热单元的氢储能热电联供综合能源系统容量优化配置
孙璐瑶1, 陈来军1,2, 熊宇峰2, 李笑竹2, 梅生伟1,2
1.青海大学 新能源光伏产业研究中心,青海 西宁 810016;2.清华大学 电机工程与应用电子技术系,北京 100084
摘要:
氢储能技术具有零污染、效率高、来源丰富等特点,是太阳能高效利用的重要手段。但是当氢储能进行热电联供时,因热电耦合约束的存在,其供能灵活性较差。针对上述问题,设计了一种考虑光热集热单元的氢储能热电联供系统,将光热集热单元作为氢储能系统的额外供热源,以系统的供能经济性为目标,建立含光热集热单元的氢储能综合能源系统容量优化配置模型。以典型的综合能源系统热电联供为算例进行仿真,验证了光热集热单元对提升氢储能热电联供能力的有效性以及所提氢储能综合能源系统容量优化配置方案的经济性。
关键词:  综合能源系统  光伏发电  光热集热单元  氢储能  热电联供  容量优化配置
DOI:10.16081/j.epae.202309016
分类号:
基金项目:国家自然科学基金联合基金资助项目(U22A20220)
Capacity optimization configuration of hydrogen energy storage cogeneration integrated energy system considering photothermal collector module
SUN Luyao1, CHEN Laijun1,2, XIONG Yufeng2, LI Xiaozhu2, MEI Shengwei1,2
1.New Energy(Photovoltaic) Industry Research Center, Qinghai University, Xining 810016, China;2.Department of Electrical Engineering, Tsinghua University, Beijing 100084, China
Abstract:
Hydrogen energy storage technology has the characteristics of zero pollution, high efficiency and abundant sources, which is an important means of efficient utilization of solar energy. However, when the hydrogen energy storage is used for cogeneration, its energy supply flexibility is poor due to the existence of thermoelectric coupling constraints. In order to solve the above problems, a hydrogen energy storage cogeneration system considering the photothermal collector module is designed. The photothermal collector module is taken as the additional heat source of the hydrogen energy storage system. Aiming at the energy supply economy of the system, the capacity optimization configuration model of the hydrogen energy storage integrated energy system including the photothermal collector module is established. The cogeneration of a typical integrated energy system is taken as the example to verify the effectiveness of the photothermal collector module to improve the cogeneration capacity of hydrogen energy storage and the economy of the proposed capacity optimization scheme for hydrogen energy storage integrated energy system.
Key words:  integrated energy system  photovoltaic power generation  photothermal collector module  hydrogen energy storage  combined heat and power  capacity optimization configuration

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