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Environmental implications of China's wind-coal combined power generation system

机译:中国风煤联合发电系统的环境影响

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China's power supply structure is dominated by coal-fired power. As China's renewable power expands, coalfired power units are required to improve flexibility to balance power system. However, more flexible operation of coal power units increases energy consumption and pollutant emissions. This paper examines the energy efficiency, CO2 and pollutant emissions characteristics of China's generic wind-coal combined power generation system, and discusses pollution-minimizing dispatch strategies by modeling three hypothetical scenarios of wind-coal combined power generation systems. For day-scale analyses, we fmd expected displacement rates of coal consumption and CO2 emission decrease by wind fraction rate, indicating reduced energy savings from wind power per unit of increase in wind capacity. For NOx emission, we find that expected displacement rate reaches maximum value of 112% when wind fraction rate is equal to 0.27.For week-scale analysis, we simulate the coal consumption rate and emission factors with and without an operation of shutdown and startup of coal power units in the system. We suggest future study on dispatch decisions of startup/shutdown of coal power units to optimize power generation economically and environmentally.
机译:中国的电源结构由燃煤电力主导。随着中国可再生能力的扩大,需要煤炭电力单位来提高平衡电力系统的灵活性。然而,更灵活的煤电机操作增加了能量消耗和污染物排放。本文研究了中国通用风力 - 煤炭联合发电系统的能效,二氧化碳和污染物排放特征,并探讨了污染最小化污染,最大限度地规模的风力 - 煤炭联合发电系统的假设情景。对于日元分析,我们通过风级分率降低了煤炭消耗和二氧化碳排放减少的预期位移率,表明每单位风力容量增加的风力耗能降低。对于NOx排放,当风级分率等于0.27时,我们发现预期的位移率达到最大值112%。对于周规模分析,我们模拟了煤炭消耗率和减排因素,无需关闭和启动系统中的煤电机。我们建议未来关于煤电机组启动/关机的调度决策的研究,以在经济和环境上优化发电。

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