首页> 外文期刊>Combustion and Flame >Effect of CF_3Br on C_1-C_3 ignition and laminar flame speed: Numerical and experimental evaluation
【24h】

Effect of CF_3Br on C_1-C_3 ignition and laminar flame speed: Numerical and experimental evaluation

机译:CF_3Br对C_1-C_3点火和层流火焰速度的影响:数值和实验评估

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Halon 1301 (CF_3Br) is a well-known flame inhibitor, the understanding of which can guide the search of novel compounds with similar capabilities. Despite its importance as a benchmark for new fire suppressants, there are comparatively few detailed data for CF_3Br that can be used to fine tune its chemical kinetics or to use as a baseline for candidate suppressants, particularly when interacting with hydrocarbon fuels. This paper presents new experimental data on ignition delay times and laminar flame speeds for mixtures containing CH_4, C_2H_6, or C_3H_8 over a range of equivalence ratios with various amounts of CF_3Br added to the mixture. Reflected-shock experiments were performed with fuel-O_2 mixtures highly diluted in Argon (98%) for temperatures between 1250 and 2250 K at an average pressure of 1.4 atm and equivalence ratios of 0.5, 1.0, and 2.0; Halon 1301 was added at levels up to about 10% of the fuel for each hydrocarbon studied. Data obtained from the shock-tube experiments included ignition delay times and OH* time histories. Laminar flame speeds were measured using a windowed, constant-volume bomb at initial pressures of 1 atm for fuel-air mixtures at equivalence ratios between 0.7 and 1.3; CF_3Br was added at levels of 0.5% and 1.0% to each mixture. A chemical kinetics mechanism was used herein to compare with the data, assembled from a recent, well-studied C_0-C_5 hydrocarbon mechanism from NU1 Gal-way and a recent CF_3Br mechanism. The model is very accurate with regard to the methane ignition behavior (with CF_3Br actually accelerating ignition). However, for ethane and propane, although the model correctly predicted that the halon should slow down ignition, the level of inhibition was drastically under-predicted for the entire range of conditions studied. For the OH* time histories, the correct trends with respect to the addition of CF_3Br were predicted, but major improvements can be made for the relative effect of the suppressant. With regard to the laminar flame speed results, the model also correctly predicted the basic trends of lowering flame speed with increasing levels of CF_3Br addition, but it rather poorly predicted the magnitude of the impact for all three fuels. Using the assembled mechanism, the relative thermal and chemical flame inhibition contributions of CF_3Br were estimated for each fuel, with the experimental chemical effect ranging from 72% to 87%, being much larger than the thermal effect (from 13% to 28%). Finally, ignition delay time and flame speed sensitivity analyses were conducted to identify the rate-controlling reactions for the systems analyzed. Given the importance of CF_3Br as a model fire suppressant, and based upon the results of this study, further improvements in its kinetics mechanism are warranted.
机译:Halon 1301(CF_3Br)是一种著名的阻燃剂,对它的理解可以指导寻找具有类似功能的新型化合物。尽管CF_3Br作为新型灭火剂的基准很重要,但很少有CF_3Br的详细数据可用于微调其化学动力学或用作候选灭火剂的基线,特别是在与碳氢化合物燃料相互作用时。本文介绍了在一系列当量比下,将CH_4,C_2H_6或C_3H_8包含各种量的CF_3Br的混合物的点火延迟时间和层流火焰速度的新实验数据。使用在氩气中高度稀释的燃料-O_2混合物(98%)在1250至2250 K之间的温度下以1.4 atm的平均压力和0.5、1.0和2.0的当量比进行反射冲击实验。对于每种研究的碳氢化合物,哈龙1301的添加量最高不超过燃料的10%。从冲击管实验获得的数据包括点火延迟时间和OH *时间历史。对于当量比为0.7到1.3的燃料-空气混合物,使用开窗的恒定体积炸弹在1atm的初始压力下测量层流火焰速度。将CF_3Br以0.5%和1.0%的水平添加到每种混合物中。本文使用化学动力学机制与数据进行比较,这些数据是根据最近对NU1 Gal-way的C_0-C_5碳氢化合物机理和最新的CF_3Br机理研究得到的。该模型在甲烷点火行为方面非常准确(CF_3Br实际上会加速点火)。然而,对于乙烷和丙烷,尽管该模型正确地预测了哈龙应放慢点火速度,但在所研究的整个条件范围内,抑制水平都大大低估了。对于OH *时间历史,可以预测关于CF_3Br添加的正确趋势,但是可以对抑制剂的相对效果做出重大改进。关于层流火焰速度结果,该模型还正确预测了随着CF_3Br添加量的增加而降低火焰速度的基本趋势,但它对所有三种燃料的影响程度的预测均较差。使用组装的机制,估计每种燃料对CF_3Br的相对热和化学火焰抑制作用,实验化学作用范围为72%至87%,远大于热作用(13%至28%)。最后,进行了点火延迟时间和火焰速度敏感性分析,以确定所分析系统的速率控制反应。考虑到CF_3Br作为模型灭火剂的重要性,并且基于本研究的结果,有必要进一步改善其动力学机理。

著录项

  • 来源
    《Combustion and Flame》 |2013年第6期|1044-1059|共16页
  • 作者单位

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas A&M University, USA;

    Department of Mechanical Engineering, Texas A&M University, USA;

    Department of Mechanical Engineering, Texas A&M University, USA;

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas A&M University, USA;

  • 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

    halon 1301; kinetics mechanism; ignition delay; flame speed;

    机译:哈龙1301;动力学机理;点火延迟;火焰速度;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号