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Performance improvement of coal-fired power generation system integrating solar to preheat feedwater and reheated steam

机译:太阳能预热给水和再热蒸汽的燃煤发电系统的性能改进

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摘要

Solar aided power generation (SAPG) technology has been proven as an efficient way to use solar energy for power generation purpose. In a SAPG plant, a solar field consisting of parabolic solar collectors is normally used to supply the solar heat to preheat feedwater and replace the high-pressure extraction steam. However, the outlet temperature of reheated steam decreased with the integration of solar thermal which sacrificed the system performance. As an improvement, the second solar field was proposed to preheat the reheated steam to maintain its outlet temperature and the average temperature of regenerative Rankine cycle before or after solar integration. Through a case study using A 600 MW supercritical SAPG plant operating in fuel-saving Using solar to preheat feedwater and reheated steam could improve overall cycle efficiency and solar-to-electricity efficiency by 1.91% and 6.01%, respectively. The solar share was expanded from 9.53% to 17.26%. The electricity generated per solar aperture area under the design condition was 187.96 W/m(2) , which was 26.91% higher than that of the system without the second solar field.
机译:太阳能辅助发电(SAPG)技术已被证明是一种将太阳能用于发电目的的有效方法。在SAPG工厂中,通常使用由抛物线形太阳能集热器组成的太阳能场来提供太阳能,以预热给水并替代高压提取蒸汽。但是,再加热蒸汽的出口温度随着太阳热能的集成而降低,从而牺牲了系统性能。作为改进,建议在第二太阳能场中对再加热的蒸汽进行预热,以保持其出口温度和太阳能整合前后朗肯循环的平均温度。通过使用600兆瓦超临界SAPG电厂进行节油的案例研究,使用太阳能对给水和再热蒸汽进行预热可以分别将总循环效率和太阳能发电效率分别提高1.91%和6.01%。太阳能份额从9.53%扩大到17.26%。在设计条件下,每个太阳能孔径面积产生的电力为187.96 W / m(2),比没有第二个太阳能场的系统的发电量高26.91%。

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