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Direct numerical simulation of a pulverized coal jet flame employing a global volatile matter reaction scheme based on detailed reaction mechanism

机译:基于详细反应机理的整体挥发物反应方案对煤粉喷射火焰的直接数值模拟

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摘要

A two-step global reaction scheme for the volatile matter of coal is proposed, and the unsteady coal particle and combustion behaviors in a turbulent pulverized coal jet flame are investigated by performing a direct numerical simulation (DNS) employing the proposed global reaction scheme. The two-step global reaction scheme is constructed to take into account the properties of the volatile matter such as transport coefficients, laminar flame speed and unburned gas temperature and to be applicable to various coal types, and it is validated by comparing the results with those obtained by the detailed reaction mechanism which includes 158 chemical species and 1,804 reactions. The validity of the DNS is also assessed by comparing the results with those in the previous experiment (Hwang et al., 2005) [16], and the unsteady coal particle motions and combustion characteristics are examined in detail. The results show that the proposed two-step global reaction scheme for the volatile matter of coal can precisely predict the laminar flame speed and burned gas temperature for various coal types from bituminous to low-rank coals over wide ranges of conditions of equivalence ratios, pressures and unburned gas temperatures. In addition, it can correctly take into account the effects of dilutions by H2O and CO2 which compromise the evaporated moisture from coal and products of char reaction. It is also verified that a lab-scale turbulent pulverized coal jet flame is well predicted by the DNS employing the proposed global reaction scheme. That is, the pulverized coal particles' velocity and its fluctuation and the characteristics of particle preferential motions are in general agreement with those observed in the experiment. The DNS reveals that in the turbulent pulverized coal jet flame, there appear premix and diffusion flame layers inside and outside, respectively. In addition, the reaction of the volatile matter and O-2 in coal-carrier air occurs in the inner premixed flame layer, whereas the reactions of the volatile matter and CO and O-2 in surrounding air occur in the outer diffusion flame layer. (C) 2015 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:提出了一种针对煤挥发物的两步全局反应方案,并采用所提出的全局反应方案进行直接数值模拟(DNS),研究了湍流粉煤喷射火焰中的不稳定煤颗粒和燃烧行为。构造两步全局反应方案时要考虑到挥发性物质的性质,例如输运系数,层流火焰速度和未燃烧气体温度,并适用于各种煤种,并通过将结果与那些结果进行比较进行了验证。通过详细的反应机理获得的结果包括158个化学物种和1,804个反应。还通过将结果与先前的实验结果进行比较来评估DNS的有效性(Hwang等,2005)[16],并详细研究了不稳定煤颗粒运动和燃烧特性。结果表明,针对当量比,压力等宽范围条件下的各种煤种,从烟煤到低等煤,提出的煤挥发物两步全局反应方案可以准确预测层流火焰速度和燃烧气体温度。以及未燃烧的气体温度。此外,它可以正确考虑H2O和CO2稀释的影响,这些影响会损害煤和焦炭反应产物的蒸发水分。还证实了DNS采用所建议的全局反应方案可以很好地预测实验室规模的湍流煤粉喷射火焰。即,煤粉的速度和波动以及颗粒优先运动的特性与实验中观察到的基本一致。 DNS显示,在湍急的煤粉喷射火焰中,在内部和外部分别出现了预混和扩散火焰层。另外,载煤空气中的挥发性物质与O-2的反应在内部预混火焰层中发生,而周围空气中的挥发性物质与CO和O-2的反应在外部扩散火焰层中发生。 (C)2015年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2015年第12期|4391-4407|共17页
  • 作者单位

    Kyoto Univ, Adv Res Inst Fluid Sci & Engn, Dept Mech Engn & Sci, Nishikyo Ku, Kyoto, Kyoto 6158540, Japan;

    Kyoto Univ, Adv Res Inst Fluid Sci & Engn, Dept Mech Engn & Sci, Nishikyo Ku, Kyoto, Kyoto 6158540, Japan;

    Kyoto Univ, Adv Res Inst Fluid Sci & Engn, Dept Mech Engn & Sci, Nishikyo Ku, Kyoto, Kyoto 6158540, Japan;

    Kyoto Univ, Adv Res Inst Fluid Sci & Engn, Dept Mech Engn & Sci, Nishikyo Ku, Kyoto, Kyoto 6158540, Japan;

    Kyoto Univ, Adv Res Inst Fluid Sci & Engn, Dept Mech Engn & Sci, Nishikyo Ku, Kyoto, Kyoto 6158540, Japan;

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

    Pulverized coal combustion; Direct numerical simulation; Volatile matter; Two-step global reaction scheme; Jet flame;

    机译:煤粉燃烧;直接数值模拟;挥发性物质;两步全局反应方案;喷射火焰;
  • 入库时间 2022-08-18 00:11:10

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