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首页> 外文期刊>Journal of Energy Storage >Justification of CO_2 as the working fluid for a compressed gas energy storage system: A thermodynamic and economic study
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Justification of CO_2 as the working fluid for a compressed gas energy storage system: A thermodynamic and economic study

机译:CO_2作为压缩气体储能系统工作流体的合理性:热力学和经济性研究

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摘要

The compressed carbon dioxide (CO2) energy storage (CCES) system has been attracting more and more attentions in recent years. The CCES system leads the way of green solutions to accommodating the intermittency of renewable power generation systems in a large-scale energy storage pattern. Particularly, the usage of CO2 as the working medium for CCES successfully offers a green solution to massive carbon capture and storage. This paper aims to further analyze the applicability and feasibility of a novel CCES system with the merit of efficiently and economically utilizing pressure energy and thermal energy. Thermodynamic and cost evaluation on the energy conversion cycle were carried out. Genetic algorithm was employed to perform multi-objective optimization on the novel energy conversion cycle with thermal energy storage towards maximizing exergy efficiency and economic profits. Results reveal that the net output power monotonously increases with turbine inlet temperature, but the unit product cost monotonously decreases with turbine inlet temperature. The multi-objective optimization recommends a 60.5% for the overall exergy efficiency and 0.23 $/kWh for the unit product cost. Moreover, scattered distribution of decision variables suggests always a higher outlet pressure for compressor.
机译:近年来,压缩二氧化碳(CO2)能量存储(CCES)系统已引起越来越多的关注。 CCES系统引领绿色解决方案的方式,以适应大规模储能模式中可再生能源发电系统的间歇性。特别是,将CO2用作CCES的工作介质成功地为大规模碳捕集与封存提供了绿色解决方案。本文旨在进一步分析新型CCES系统的适用性和可行性,该系统具有高效,经济地利用压力能和热能的优点。对能量转换周期进行了热力学和成本评估。采用遗传算法对具有热能存储的新型能量转换循环进行多目标优化,以最大化火用效率和经济效益。结果表明,净输出功率随涡轮进口温度单调增加,但单位产品成本随涡轮进口温度单调降低。多目标优化建议总火用效率为60.5%,单位产品成本为0.23 $ / kWh。此外,决策变量的分散分布始终表明压缩机的出口压力较高。

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