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Performance analysis of a tower solar collector-aided coal-fired power generation system

机译:塔式集热器辅助燃煤发电系统的性能分析

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Abstract In this paper, a tower solar collector-aided coal-fired power generation (TSCACPG) system is proposed and studied in order to save the fossil energy and protect the environment. The integration scheme of tower solar collector and conventional coal-fired power plant is proposed. Based on the simulation platform TRNSYS, the TSCACPG system model is established and the dynamic performance of the TSCACPG system with the operating mode of coal saving is studied. The TSCACPG system performances of 1 day and 1 year are all discussed by using the DNI data of typical year in Chinese typical city of Dunhuang. Then, the sensitivity analysis of the TSCACPG system is carried out by changing the heliostat field scale (the size of the molten salt tower also changes accordingly). The annual performance of the TSCACPG system is also acquired. In consideration of the economic costs, the heliostat field area with the maximum annual solar-to-electric efficiency is selected as the optimal value. The results show that, for the case studied, the optimal heliostat field area is 101,400 m 2 , and the maximum annual solar-to-electric efficiency is 16.74%. And under the optimal situation, the standard coal consumption rate of the original coal-fired power plant is reduced from 301.5 g/kWh to 294.5 g/kWh.
机译:摘要为了节省化石能源,保护环境,提出并研究了塔式太阳能集热辅助发电系统(TSCACPG)。提出了塔式太阳能集热器与常规燃煤电厂的一体化方案。基于仿真平台TRNSYS,建立了TSCACPG系统模型,研究了节煤运行模式下的TSCACPG系统的动态性能。利用中国典型城市敦煌市典型年份的DNI数据,讨论了TSCACPG系统1天1年的性能。然后,通过改变定日镜场规模(熔融盐塔的大小也随之改变)来进行TSCACPG系统的灵敏度分析。还获得了TSCACPG系统的年度性能。考虑到经济成本,选择具有最高年度太阳能效率的定日镜场区域作为最佳值。结果表明,在所研究的情况下,最佳的定日镜场面积为101,400 m 2,最大年太阳能效率为16.74%。在最佳情况下,原始燃煤电厂的标准煤耗率从301.5 g / kWh降低到294.5 g / kWh。

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