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首页> 外文期刊>Biomass & bioenergy >Optimizing a woodchip and coal co-firing retrofit for a power utility boiler using CFD
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Optimizing a woodchip and coal co-firing retrofit for a power utility boiler using CFD

机译:使用CFD优化电力锅炉的木片和煤共烧改造

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摘要

A computational fluid dynamics (CFD) tool, CFX-TASCflow, with a drag force sub-model for woodchip particles was used to explore the optimization of woodchip co-firing of a Canadian utility boiler, after it was first validated by comparing the model results with field operation data when firing Colombia coal. The CFD model predicted both a small increase in NO emissions and a significant increase in unburned carbon in fly ash for the originally proposed co-firing configuration, with 85% of the unburned carbon originating from the woodchips. Improvement strategies were examined, including intensifying the swirl inside the furnace to improve oxygen availability for woodchip combustion, lowering the woodchip injection level to increase residence time, and reducing woodchip particle size to shorten burnout time. The model results revealed the importance of intensified swirl on the burnout of large woodchip particles and the sensitivity of NO emissions to the air distribution in the combustion zone. Also, the model predicted an increase in large unburned woodchip particles falling into the bottom hopper when lowering woodchip injection level, although there was an overall improvement in predicted woodchip burnout. An improvement in woodchip burnout was also observed with reduced woodchip particle size. Based on these results, a co-firing strategy is suggested that is predicted to give reasonable burnout and NOx emissions at a minimum retrofitting cost.
机译:在通过比较模型结果进行首次验证之后,使用具有木屑颗粒拖曳力子模型的计算流体动力学(CFD)工具CFX-TASCflow来探索加拿大木屑共燃的最佳选择燃烧哥伦比亚煤炭时的现场操作数据。 CFD模型预测,对于最初提出的共燃结构,粉煤灰中的NO排放量将少量增加,而未燃烧的碳将显着增加,其中85%的未燃烧碳来自木片。研究了改进策略,包括增强炉内涡流以改善木屑燃烧的氧气利用率,降低木屑注入量以增加停留时间,并减小木屑粒径以缩短燃尽时间。模型结果表明,加大旋流对燃尽木屑大颗粒的重要性以及NO排放对燃烧区空气分布的敏感性。此外,该模型还预测了降低木屑注入量时落入底部料斗的未燃烧木屑大颗粒的增加,尽管预测的木屑燃尽情况总体上有所改善。随着木片颗粒尺寸的减小,木片燃尽也得到了改善。根据这些结果,提出了一种共燃策略,该策略预计将以最小的改造成本提供合理的燃尽和NOx排放。

著录项

  • 来源
    《Biomass & bioenergy》 |2016年第5期|35-42|共8页
  • 作者单位

    Natural Resources Canada, CanmetENERGY, 1 Haanel Drive, Ottawa, Ontario, K1A 1M1, Canada;

    Natural Resources Canada, CanmetENERGY, 1 Haanel Drive, Ottawa, Ontario, K1A 1M1, Canada;

    Natural Resources Canada, CanmetENERGY, 1 Haanel Drive, Ottawa, Ontario, K1A 1M1, Canada;

    Natural Resources Canada, CanmetENERGY, 1 Haanel Drive, Ottawa, Ontario, K1A 1M1, Canada;

    Nova Scotia Power, 1223 Lower Water Street, Halifax, Nova Scotia, B3J 3S8, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass; Unburned carbon; Computational fluid dynamics;

    机译:生物质未燃烧的碳;计算流体动力学;

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