首页> 外文会议>Combustion Institute conference >A kinetic modeling study on the oxidation of primary reference fuel-toluene mixtures including cross reactions between aromatics and aliphatics
【24h】

A kinetic modeling study on the oxidation of primary reference fuel-toluene mixtures including cross reactions between aromatics and aliphatics

机译:一种动力学建模研究,初级参考燃料 - 甲苯混合物,包括芳烃与龙磷酸酯的交叉反应

获取原文

摘要

A detailed chemical kinetic model for the mixtures of primary reference fuel (PRF: n-heptane and iso-octane) and toluene has been proposed. This model is divided into three parts; a PRF mechanism [T. Ogura, Y. Sakai, A. Miyoshi, M. Koshi, P. Dagaut, Energy Fuels 21 (2007) 3233-3239], toluene sub-mechanism and cross reactions between PRF and toluene. Toluene sub-mechanism includes the low temperature kinetics relevant to engine conditions. A chemical kinetic mechanism proposed by Pitz et al. [W.J. Pitz, R. Seiser, J.W. Bozzelli, et al., in: Chemical Kinetic Characterization of the Combustion of Toluene, Proceedings of the Second Joint Meeting of the U.S. Sections of the Combustion Institute, 2001] was used as a starting model and modified by updating rate coefficients. Theoretical estimations of rate coefficients were performed for toluene and benzyl radical reactions important at low temperatures. Cross reactions between alkane, alkene, and aromatics were also included in order to account for the acceleration by the addition of toluene into iso-octane recently found in the shock tube study of the ignition delay [Y. Sakai, H. Ozawa, T. Ogura, A. Miyoshi, M. Koshi, W.J. Pitz, Effects of Toluene Addition to Primary Reference Fuel at High Temperature, SAE 2007-01-4104, 2007]. Validations of the model were performed with existing shock tube and flow tube data. The model well predicts the ignition characteristics of PRF/toluene mixtures under the wide range of temperatures (500-1700 K) and pressures (2-50 atm). It is found that reactions of benzyl radical with oxygen molecule determine the reactivity of toluene at low temperature. Although the effect of toluene addition to iso-octane is not fully resolved, the reactions of alkene with benzyl radical have the possibility to account for the kinetic interactions between PRF and toluene.
机译:一个详细的化学动力学模型用于主参考燃料(PRF:正庚烷和异辛烷)的混合物已经提出和甲苯。该模型分为三个部分; PRF机制[T.小仓,Y.酒井,A.三好,M.志,P. Dagaut,能源燃料21(2007)3233-3239],甲苯子机构和PRF和甲苯之间的交叉反应。甲苯子机构包括与发动机条件相关的低温动力学。 Pitz等人提出的化学动力学机制。 [W.J. Pitz,R. Seiser,J.W. Bozzelli等人,在:甲苯燃烧的化学动力学表征,美国燃烧研究所的美国第二次联合会议的诉讼程序,2001]用作启动模型,并通过更新速率系数进行修改。在低温下对甲苯和苄基自由基反应进行速率系数的理论估计。还包括烷烃,烯烃和芳烃之间的交叉反应,以便通过将甲苯加入到ISO-辛烷中最近发现的点火延迟的冲击管研究中的加速[Y. Sakai,H. Ozawa,T. Ogura,A.Miyoshi,M.Koshi,W.J.Itz,甲苯,甲苯,高温下的甲苯的影响,SAE 2007-01-4104,2007]。使用现有的冲击管和流管数据进行模型的验证。该模型的预测效果的宽范围的温度(500-1700 K)和压力(2-50大气压)下PRF /甲苯混合物的点火特性。结果发现苄基与氧分子的反应决定了低温下甲苯的反应性。尽管甲苯加入对异辛烷的影响没有完全分解,但烯烃与苄基的反应有可能考虑PRF和甲苯之间的动力学相互作用。

著录项

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