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THE DEPOSITION AND BURNING CHARACTERISTICS DURING SLAGGING CO-FIRING COAL AND WOOD: MODELING AND NUMERICAL SIMULATION

机译:燃煤和木材结渣过程中的沉积和燃烧特性:建模和数值模拟

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摘要

Numerical analysis was used to study the deposition and burning characteristics of combining co-combustion with slagging combustion technologies in this paper. The pyrolysis and burning kinetic models of different fuels were implanted into the WBSF-PCC2 (wall burning and slag flow in pulverized co-combustion) computation code, and then the slagging and co-combustion characteristics-especially the wall burning mechanism of different solid fuels and their effects on the whole burning behavior in the cylindrical combust or at different mixing ratios under the condition of keeping the heat input same-were simulated numerically. The results showed that adding wood powder at 25% mass fraction can increase the temperature at the initial stage of combustion, which is helpful to utilize the front space of the combustor. Adding wood powder at a 25% mass fraction can increase the reaction rate at the initial combustion stage; also, the coal ignitability is improved, and the burnout efficiency is enhanced by about 5% of suspension and deposition particles, which is helpful for coal particles to burn entirely and for combustion devices to minimize their dimensions or sizes. The results also showed that adding wood powder at a proper ratio is helpful to keep the combustion stability, not only because of the enhancement for the burning characteristics, but also because the running slag layer structure can be changed more continuously, which is very important for avoiding the abnormal slag accumulation in the slagging combustor. The theoretic analysis in this paper proves that unification of co-combustion and slagging combustion technologies is feasible, though more comprehensive and rigorous research is needed.
机译:本文采用数值分析方法研究了混燃与排渣燃烧技术相结合的沉积和燃烧特性。将不同燃料的热解和燃烧动力学模型植入WBSF-PCC2(粉化共燃烧中的壁燃烧和炉渣流动)计算代码,然后得出结渣和共燃烧特性,尤其是不同固体燃料的壁燃烧机理数值模拟了在保持热量输入不变的情况下,它们对圆柱状燃烧室或不同混合比下的整体燃烧性能的影响。结果表明,添加质量分数为25%的木粉可以提高燃烧初期的温度,这有助于利用燃烧器的前部空间。以25%的质量分数添加木粉可以提高初始燃烧阶段的反应速率;另外,煤的可燃性得到改善,燃耗效率提高了约5%的悬浮颗粒和沉积颗粒,这有助于煤颗粒完全燃烧,并使燃烧装置的尺寸或尺寸最小化。结果还表明,以适当的比例添加木粉有助于保持燃烧稳定性,这不仅是因为提高了燃烧特性,而且还因为可以进一步连续地改变炉渣层的结构,这对于保持燃烧稳定性非常重要。避免了炉渣燃烧室中异常炉渣的积聚。本文的理论分析证明,尽管需要更全面,更严格的研究,但将混合燃烧和排渣燃烧技术统一是可行的。

著录项

  • 来源
    《Combustion Science and Technology》 |2009年第6期|710-728|共19页
  • 作者单位

    Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, China;

    Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, China;

    Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, China;

    Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomass; co-combustion; numerical simulation; pulverized coal; slagging combustion;

    机译:生物质共燃;数值模拟煤粉结渣燃烧;
  • 入库时间 2022-08-18 00:12:27

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