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A consistent flamelet formulation for a reacting char particle considering curvature effects

机译:考虑曲率效应的反应性炭颗粒的一致小火焰配方

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摘要

In the present work, the combustion of a single char particle in quiescent and convective environments is investigated numerically. Fully resolved CFD calculations are carried out considering heterogeneous reactions at the particle surface and detailed homogeneous reactions in the gas phase. Unity and non-unity Lewis number diffusion modeling approaches are employed and compared to each other. The flame shape of the particle in a quiescent atmosphere shows full symmetry whereas the particle in the convective environment exhibits a stagnation region upstream of the particle and a wake region downstream of the particle. The detailed CFD results are used to analyze the flame structure around the char particle and corresponding flamelet simulations are carried out. For the presently investigated case, curvature effects of mixture fraction, species and temperature are found to be significant in almost all the cases. These curvature effects correspond to diffusion tangential to iso-surfaces of mixture fraction. To describe these processes, new extended flamelet equations are derived. The individual terms in the flamelet equations are analyzed for both the quiescent and the convective environment based on the CFD data and the results confirm the importance of tangential diffusion. Except for the quiescent environment and unity Lewis numbers, curvature cannot be neglected for the investigated char combustion case. For all other cases, significant differences between the standard flamelet model and the detailed CFD results are found. On the other hand, applying the extended flamelet equations yields very good agreement with the CFD results.
机译:在目前的工作中,数值研究了单个炭颗粒在静止和对流环境中的燃烧。考虑到颗粒表面的异相反应和气相中详细的均相反应,进行了完全解析的CFD计算。使用统一和非统一的Lewis数扩散建模方法,并将它们相互比较。处于静止气氛中的粒子的火焰形状显示出完全对称,而在对流环境中的粒子在粒子的上游呈现出停滞区域,而在粒子的下游呈现出尾流区域。详细的CFD结果用于分析炭颗粒周围的火焰结构,并进行了相应的小火焰模拟。对于目前研究的情况,几乎在所有情况下,混合分数,种类和温度的曲率影响都非常明显。这些曲率效应对应于切向于混合比等值面的扩散。为了描述这些过程,导出了新的扩展小火焰方程。基于CFD数据,对静态和对流环境的小火焰方程中的各个项进行了分析,结果证实了切向扩散的重要性。除了静态环境和统一的Lewis数,对于所研究的炭燃烧情况,曲率不能忽略。对于所有其他情况,发现标准小火焰模型与详细的CFD结果之间存在显着差异。另一方面,应用扩展的小火焰方程与CFD结果非常吻合。

著录项

  • 来源
    《Combustion and Flame 》 |2013年第11期| 2540-2558| 共19页
  • 作者单位

    Chair of Numerical Thermo-Fluid Dynamics, ZIK Virtuhcon, TU Bergakademie Freiberg, Freiberg 09599, Germany;

    Chair of Numerical Thermo-Fluid Dynamics, ZIK Virtuhcon, TU Bergakademie Freiberg, Freiberg 09599, Germany;

    Chair of Numerical Thermo-Fluid Dynamics, ZIK Virtuhcon, TU Bergakademie Freiberg, Freiberg 09599, Germany;

    Chair of Numerical Thermo-Fluid Dynamics, ZIK Virtuhcon, TU Bergakademie Freiberg, Freiberg 09599, Germany;

  • 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

    Char combustion; Coal; Non-premixed flamelet; Differential diffusion; Curvature; Tangential diffusion;

    机译:炭燃烧;煤;非预混小火焰;微分扩散曲率切向扩散;

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