CFB锅炉压火热备和快速启动调峰技术研究进展

Research of CFB boiler banked fire for heat standby and rapid startup peak regulation technology

  • 摘要: 在双碳目标驱动下,可再生能源电力并网规模迅速增长,严重威胁电力系统的安全稳定和传统煤电机组的经济效益。部分地域甚至出现“零电价”与“负电价”现象,要求进一步挖掘煤电机组的深度调峰能力,实现近零负荷调峰。循环流化床(Circulating Fluidized Bed, CFB)锅炉凭借强大的蓄热能力和独特的焖炉压火操作,具备了近零负荷调峰的可能性。压火热备与快速启动调峰技术有望成为解决零负电价问题的关键技术之一。基于当前CFB锅炉的深度调峰能力和国内外压火调峰技术的研究现状,阐述了压火热备和快速启动调峰技术的可行性和技术难点,总结分析了影响压火时间的关键因素。典型300 MW等级CFB锅炉可以通过抬高床温床压、降低压火期间机组负荷的方式延长压火时间。但由于锅炉总蓄热量有限,压火调峰时间只有2 h左右,距离完全解决零负电价问题还有很大的进步空间。为提高压火调峰的灵活性,需要摆脱传统压火方式“停煤停风”的限制,通过在压火期间向炉内补煤助燃并降低扬火启炉难度来延长压火时间。前沿技术包括周期性压火技术和预热−CFB耦合压火技术,但相关技术的操作难度较高且发展不够成熟,暂时无法推广应用。未来发展方向应包括更深入的基础理论研究、与储能等前沿技术的耦合匹配以及全新炉型和智能测控系统的开发,从而推动压火调峰技术的快速发展,助力解决电力市场调峰难题。

     

    Abstract: Driven by the goals of carbon peaking and carbon neutrality, renewable energy power grid scale expands rapidly, which is a serious threat to the security of the power system and the economic benefits of traditional coal power units. In some regions, even phenomena of zero and negative electricity prices have occurred, requiring further tapping into the deep peak regulation capacity of coal power units to achieve near-zero-load peak regulation. The Circulating Fluidized Bed (CFB) boiler, with its powerful heat storage capacity and unique banked fire operation, possess the possibility of near-zero load peak shaving. Banked fire for heat standby and rapid startup peak regulation technology is expected to be one of the key technologies to solve the problem of zero and negative tariffs. Therefore, based on the current deep peak regulation capacity of CFB boilers and the frontier technology of banked fire peak regulation domestically and internationally, the feasibility and technical challenges of banked fire for hot standby and rapid startup peak regulation technology are explored, and the key factors affecting the duration of banked fire are summarized and analyzed. Typical 300 MW grade CFB boilers can extend the duration of banked fire by raising bed temperature and pressure, and reducing load. However, due to the limitations of the boilers’ total heat storage capacity, it can only achieve approximately 2 h duration of banked fire peak regulation, which is a long way from solving the issues of zero and negative traffic. To improve the flexibility of banked fire peak regulation, it is necessary to get rid of the traditional banked fire mode without coal and wind, and extend the banked fire duration through supplementing heat to the furnace during banked fire and reducing the difficulty of startup. The cutting-edge technical approaches include periodic banked fire technology and preheat-CFB banked fire technology. However, the operation of these technologies is difficult and not yet mature enough to be widely applied. Future development directions should include more in-depth basic theoretical research, coupling with frontier technologies such as energy storage, and the development of new furnace types and intelligent measurement and control systems. This will promote the rapid development of banked fire peak regulation technology and help solve acute issues in the electricity market.

     

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