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作 者:杨美[1] 丁源 程秋洁 周云龙[1] 王迪[3] 李婷 YANG Mei;DING Yuan;CHENG Qiujie;ZHOU Yunlong;WANG Di;LI Ting(School of Energy and Power Engineering,Northeast Electrical Power University,Jilin Jilin 132012;CHN Energy Jilin Jiangnan Co-genration Power Co.Ltd.,Jilin Jilin 132002;School of Automation Engineering,Northeast Electrical Power University,Jilin Jilin 132012)
机构地区:[1]东北电力大学能源与动力工程学院,吉林吉林132012 [2]国能吉林江南热电有限公司,吉林吉林132002 [3]东北电力大学自动化工程学院,吉林吉林132012
出 处:《东北电力大学学报》2024年第3期94-101,共8页Journal of Northeast Electric Power University
基 金:国家自然科学基金(52306004);东北电力大学博士科研启动基金(BSJXM-2023104)。
摘 要:为降低CO_(2)的能耗并且提高发电效率,以超超临界二次再热-碳捕集系统为参考系统,提出了耦合太阳和ORC系统的二次再热-碳捕集优化方案。利用Ebsilon软件构建了优化系统模型,并进行了热力性能、经济性和运行性能分析。结果表明:与参考系统相比,优化系统热效率提高了4.78%,热耗降低了1005 kJ/(kW·h),煤耗降低了36.50 g/(kW·h);太阳能辅助系统年运行时间占比为60%,均省煤量可达到2.0×10^(4)t。优化方案具有更好的热经济性并且减少了发电耗煤量,为CO_(2)捕集和减排提供优化思路。With the purpose of reducing the energy consumption of CO_(2) and promoting the efficiency of power generation,this paper proposes an optimization scheme of double reheat-carbon capture coupled with solar and ORC systems,using the ultra-supercritical double reheat-carbon capture system as the reference system.In this paper,an optimization scheme of double reheat-carbon capture coupled with solar and ORC systems is proposed.The optimized system model is constructed using Ebsilon software.The thermal performance,economics and operational performance of the system were analyzed.The results of the study showed that the thermal efficiency of the optimized system was increased by 4.78%,and the heat consumption was reduced by 1005 kJ/(kW-h)and coal consumption by 36.50 g/(kW-h)compared to the reference system;the annual operating time of the solar auxiliary system is 60%,and the average coal saving can reach 2.0×10^(4) t.The optimized scheme has better thermal economy and reduced coal consumption for power generation,which provides an optimization idea for CO_(2) capture and emission reduction.
分 类 号:TM621[电气工程—电力系统及自动化]
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