王兆福, 徐进良, 孙恩慧, 郭源东. 小容量燃煤S-CO2发电系统热力学构建路径分析[J]. 中国电机工程学报, 2023, 43(11): 4092-4103. DOI: 10.13334/j.0258-8013.pcsee.221266
引用本文: 王兆福, 徐进良, 孙恩慧, 郭源东. 小容量燃煤S-CO2发电系统热力学构建路径分析[J]. 中国电机工程学报, 2023, 43(11): 4092-4103. DOI: 10.13334/j.0258-8013.pcsee.221266
WANG Zhaofu, XU Jinliang, SUN Enhui, GUO Yuandong. Thermodynamic Roadmap to Construct Small Capacity Coal-fired S-CO2 Power Generation[J]. Proceedings of the CSEE, 2023, 43(11): 4092-4103. DOI: 10.13334/j.0258-8013.pcsee.221266
Citation: WANG Zhaofu, XU Jinliang, SUN Enhui, GUO Yuandong. Thermodynamic Roadmap to Construct Small Capacity Coal-fired S-CO2 Power Generation[J]. Proceedings of the CSEE, 2023, 43(11): 4092-4103. DOI: 10.13334/j.0258-8013.pcsee.221266

小容量燃煤S-CO2发电系统热力学构建路径分析

Thermodynamic Roadmap to Construct Small Capacity Coal-fired S-CO2 Power Generation

  • 摘要: 超临界二氧化碳(supercritical carbon dioxide,S-CO2)循环具有灵活、紧凑的特点,小容量燃煤S-CO2电厂可作为分布式能源系统的调节电源。该文以小容量燃煤S-CO2发电系统热力学构建为目标,从循环结构和主汽温压参数的选择出发,提出以下系统构建路径:1)结合燃煤热源特点,从系统高效和技术经济性出发选取循环结构;2)通过主汽压力对循环热效率的敏感性分析,选取最优压力;3)从材料高温强度的角度出发,避免S-CO2锅炉受热面超温过热,进而在材料边界条件下,选取主汽温度。基于此路径,提出更适合于燃煤热源的三压缩末级部分压缩循环(tri- compressions with last-stage partial compression,PTC),并且增加一次再热(reheating,RH)措施,推荐PTC+RH为小容量机组基本循环,选取25MPa/605℃为小容量机组主汽温压参数,最终完成了50MW耦合锅炉模型的燃煤S-CO2系统设计,系统发电效率达到41.15%。该研究结果对小容量S-CO2系统构建具有一定指导意义。

     

    Abstract: Supercritical carbon dioxide (S-CO2) cycle has been shown to have compact size and fast response to external load variation. Small-scale capacity coal-fired S-CO2 power plant can be used as the regulating heat source in distributed energy systems. The objective of this paper is to construct the small-scale coal-fired S-CO2 power plant. The construction roadmap is proposed as follows. 1) Cycle configuration is selected by considering efficiency and technical economy. 2) The optimal main vapor pressure is selected by the sensitivity analysis of cycle efficiency with the pressure. 3) Considering the overheating of boiler components, the main vapor temperature is selected at the material boundary conditions frequently-used in steam boilers. Based on the above path, tri-compressions with last-stage partial compression (PTC) are proposed, which are more suitable for coal-fired power plants. And reheating (RH) and PTC are integrated as PTC+RH, which is recommended for demonstration power plants. Then, 25MPa/605℃ are selected as the main vapor parameters. At last, a 50MW coal-fired power plant is given. The power efficiency is 43.91%. The work provides the guideline for the design and operation of small-scale S-CO2 coal fired power plant.

     

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