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Off-design thermodynamic performances of a solar tower aided coal-fired power plant for different solar multiples with thermal energy storage

机译:带有热能存储的太阳能塔辅助燃煤电厂针对不同太阳能倍数的设计外热力学性能

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Solar aided coal-fired power system has been proven to be a promising way to utilise solar energy in large scale. In this paper, the performances of the solar tower aided coal-fired power (STACP) system at 100% load, 75% load, and 50% load for different days are investigated and the maximum solar power that the boiler can absorb under different plant loads are explored. Then, the effects of solar multiple (SM) and the thermal energy storage (TES) hour on the daily performance of STACP system are investigated. Results show that the maximum solar power that a 600 MWe boiler can absorb at 100% load, 75% load and 50% load are 76.4 MWth, 54.2 MWth and 23.0 MWth, respectively. Due to the augmented energy from the solar field, the maximum standard coal consumption rate is reduced by 13.53 g/kWh, 12.81 g/kWh and 8.22 g/kWh at 100% load, 75% load and 50% load, respectively. With an increase of solar power input, the boiler efficiency, overall system efficiency and solar thermal-to-electricity efficiency show a downward trend. In addition, the daily coal consumption of summer solstice is the lowest while the winter solstice is the highest for a particular SM and TES hour. (C) 2018 Elsevier Ltd. All rights reserved.
机译:太阳能辅助燃煤发电系统已被证明是大规模利用太阳能的一种有前途的方式。本文研究了太阳能塔式燃煤发电系统(STACP)在100%负荷,75%负荷和50%负荷下不同天的性能,并分析了不同工厂下锅炉可吸收的最大太阳能探索负荷。然后,研究了太阳能倍数(SM)和热能存储(TES)小时对STACP系统日常性能的影响。结果表明,一个600 MWe锅炉在100%负荷,75%负荷和50%负荷下可以吸收的最大太阳能分别为76.4 MWth,54.2 MWth和23.0 MWth。由于来自太阳能场的能量增加,在100%负荷,75%负荷和50%负荷下,最大标准煤耗率分别降低了13.53 g / kWh,12.81 g / kWh和8.22 g / kWh。随着太阳能输入的增加,锅炉效率,整体系统效率和太阳能热电效率呈下降趋势。此外,在特定的SM和TES小时内,夏至的日煤消耗量最低,而冬至的日煤消耗量最高。 (C)2018 Elsevier Ltd.保留所有权利。

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