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Propagation and stability characteristics of laminar lifted diffusion flame base

机译:层流举升式扩散火焰基的传播和稳定性

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摘要

Numerical calculations of the flame propagation speed and the Damkohler number (Da) at laminar lifted flame base were carried out. The results are intended for further understanding the propagation and the Damkohler mechanisms for flame stabilization, with the former based on a tribrachial flame propagating against the local flow velocity and the latter based on the competition between the reaction time and local residence time of the peak reaction zone. Propane fuel without and with dilution (40% helium and argon, by volume) was used, while the reaction scheme adopted was the one-step irreversible Arrhenius kinetics (see Li et al., Combust. Flame 157 (2010) 1484-1495) which proved successful in predicting the flame lift-off height and effects of thermal expansion and multi-component diffusion. The results reported in this paper show that the flame base propagation speed is up to approximately four times of the one-dimensional stoichiometric flame speed of the fuels used, depending on where the propagation front is defined. These results are compared with previously published experimental and theoretical results from laminar and turbulent diffusion flames. It is found that the flame base propagation speed (Vp) increases in the downstream direction as a result of increasing jet velocity (Vo) under most flame conditions, providing a stabilizing mechanism. However, there exist conditions where Vp decreases while the flame stabilizes. The flame base Damkohler number (Da) always increases as the flame liftoff height increases (resulting from increasing jet velocity). Da is here defined as ratio of peak reaction rate of the reaction kernel (RR) to the flame stretch rate (fc) determined at the intersection of the reaction kernel (approximately coinciding with the 2000 K isotherm) and the stoichiometric contour. The value of Da appears to be of the order of 10-3 for the three fuels studied, and the increasing trend of Da with the lift-off height also helps to explain the flame stabilization.
机译:进行了层流提升火焰基部火焰传播速度和达姆霍勒数(Da)的数值计算。结果旨在进一步了解火焰稳定的传播和达姆霍勒机理,前者基于三臂火焰与局部流速的关系而传播,后者基于反应时间与峰值反应的局部停留时间之间的竞争区。使用了不带稀释的丙烷燃料(按体积计40%的氦气和氩气),而采用的反应方案是一步不可逆的Arrhenius动力学(请参见Li等人,Combust。Flame 157(2010)1484-1495)事实证明,该方法可以成功预测火焰的抬起高度以及热膨胀和多组分扩散的影响。本文报道的结果表明,火焰基准的传播速度大约是所用燃料的一维化学计量火焰速度的四倍,这取决于定义传播前沿的位置。将这些结果与先前发表的层流和湍流扩散火焰的实验和理论结果进行了比较。已经发现,由于在大多数火焰条件下射流速度(Vo)增加,所以火焰基传播速度(Vp)在下游方向上增加,从而提供了稳定机制。但是,存在火焰稳定时Vp降低的条件。火焰基准Damkohler数(Da)总是随着火焰提升高度的增加而增加(由于射流速度的增加)。 Da在此定义为反应核的峰值反应速率(RR)与在反应核的交点(近似等于2000 K等温线)和化学计量轮廓上确定的火焰拉伸速率(fc)之比。对于所研究的三种燃料,Da的值似乎在10-3的数量级,并且Da随提离高度的增加趋势也有助于解释火焰稳定性。

著录项

  • 来源
    《Combustion and Flame》 |2012年第5期|p.1821-1831|共11页
  • 作者单位

    Mechanical, Materials and Aerospace Engineering Department, University of Central Florida, Orlando, FL 32816-2450, United States;

    Mechanical, Materials and Aerospace Engineering Department, University of Central Florida, Orlando, FL 32816-2450, United States;

    National Energy Technology Laboratory, Department of Energy, P.O. Box 10940, MS 84-340, Pittsburgh, PA 15261, United States;

  • 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

    flame lift-off; stabilization; triple flame; flame base; flame propagation speed; damkohler number;

    机译:火焰升起;稳定三重火焰火焰基火焰传播速度;达姆赫勒数;
  • 入库时间 2022-08-18 00:12:03

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