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Low load performance of tangentially-fired boiler with annularly combined multiple airflows

机译:与环形组合多个气流的切向锅炉的低负荷性能

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摘要

A novel burner arrangement scheme with annularly combined multiple airflows (ACMA) was previously proposed for wall-tangentially fired boiler (WTFB), and its superiority over traditional WTFB had been proved. However, coal-fired boilers are often required to play the role of peak-shaving. To this, low load performances of ACMA boiler were investigated in this work to test whether ACMA can still work well under low boiler thermal load (BTL) conditions. Results show that ACMA boiler performance is still better than that of traditional WTFB under low BTL condition, with smaller airflow deflection, improved coal combustion behavior and alleviated thermal deviation on suspended heating surfaces. Besides, NOx emission characteristic of ACMA boiler under low BTL is more desirable. Furthermore, the location of non-service burners has significant effects on coal combustion and heat transfer processes under 440 MW load conditions, and closing the upper burner group is the optimal choice in terms of the comprehensive boiler performance. These findings deepen the understanding of ACMA boiler and provide theoretical and practical guidance in its application in power plants.(c) 2021 Elsevier Ltd. All rights reserved.
机译:先前提出了一种具有环形组合多气流(ACMA)的新型燃烧器布置方案,用于壁切向烧制锅炉(WTFB),证明了其对传统WTFB的优越性。然而,燃煤锅炉通常需要发挥峰值剃须的作用。为此,在这项工作中研究了ACMA锅炉的低负载性能,以测试ACMA是否在低锅炉热负荷(BTL)条件下仍然可以很好地工作。结果表明,在低BTL条件下,ACMA锅炉性能仍然优于传统的WTFB,气流挠度较小,煤燃烧行为改善,缓解悬浮加热表面的热偏差。此外,低BTL下的ACMA锅炉的NOx发射特性更为希望。此外,非服务燃烧器的位置对440 MW负荷条件下的煤燃烧和传热过程具有显着影响,并且关闭上燃烧器组是综合锅炉性能方面的最佳选择。这些发现深化了对ACMA锅炉的理解,并在其在发电厂的应用中提供了理论和实践指导。(c)2021 Elsevier Ltd.保留所有权利。

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