考虑氢能利用与碳捕集联合灵活运行的综合能源系统源荷低碳优化OA北大核心CSTPCD
Low-carbon Optimization of Integrated Energy System Considering Flexible Joint Operation of Hydrogen Energy Utilization and Carbon Capture
为提高综合能源系统的低碳特性和新能源消纳能力,提出一种考虑氢能利用与碳捕集电厂联合灵活运行的综合能源系统源荷低碳优化调度策略.首先,引入溶液存储器和烟气旁路系统,建立碳捕集电厂综合灵活运行模型,针对氢能转换特性建立氢能利用模型,并提出碳捕集电厂-氢能利用的联合灵活运行模型;其次,构建计及价格型、激励型的综合需求响应模型;最后,以最优经济和低碳为目标,构建了综合能源系统低碳经济调度模型.仿真结果表明,考虑碳捕集电厂-氢能利用联合运行模型能有效降低系统碳排放量,实现综合能源系统经济、环保运行.
To improve the low-carbon characteristics and new energy consumption capacity of an integrated energy sys-tem(IES),a source-load low-carbon optimal scheduling strategy for IES considering the flexible joint operation of hy-drogen energy utilization and carbon capture power plant(CCPP)is proposed.First,an integrated flexible operation model of CCPP is established by introducing solution storage and flue gas bypass system.According to the characteris-tics of hydrogen energy conversion,a hydrogen energy utilization model is established,and a flexible joint operation model of CCPP-hydrogen energy utilization is put forward.Second,an integrated demand response model considering price and incentive is constructed.Finally,with an objective of optimal economy and low-carbon,a low-carbon econom-ic scheduling model of IES is constructed.Simulation results show that the joint operation model of CCPP-hydrogen en-ergy utilization can effectively reduce carbon emissions from the system and realize the economic and environmental op-eration of IES.
高瑞阳;王新宝;高娴;王芳;徐懂理
南京工程学院电力工程学院,南京 210000南京南瑞继保电气有限公司,南京 211100奥尔堡大学,奥尔堡 9220
动力与电气工程
综合灵活运行模型氢能利用综合需求响应碳捕集电厂联合运行
integrated flexible operation modelhydrogen energy utilizationintegrated demand responsecarbon cap-ture power plant(CCPP)joint operation
《电力系统及其自动化学报》 2024 (005)
37-47 / 11
江苏省研究生科研与实践创新计划资助项目(SJCX22_1081)
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