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Shock-Tube Experiments and Kinetic Modeling of Toluene Ignition

机译:甲苯点火的冲击管实验和动力学建模

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Recent ignition delay time studies of toluene ignition (using shock tubes and rapid-compression machines) have not achieved a strong consensus at intermediate temperatures (900-1200 K) and high pressures (near 50 a tin). However, the development and refinement of reaction mechanisms for toluene at engine-relevant conditions demand an accurate knowledge of these ignition delay times. To help resolve this issue, we have measured ignition delay times for toluene/air mixtures (0 = 1.0) at high pressures (near 50 atm) over the temperature range of 966 to 1211 K using pressure and emission measurements behind reflected shock waves. The new ignition delay times were found to be in good agreement with the previous study of Davidson et al. [Davidson, D. F., Gauthier, B. M., and Hanson, R. K., "Shock Tube Ignition Measurements of Iso-Octane/Air and Toluene/Air at High Pressures," Proceedings of the Combustion Institute, Vol. 301,2005, pp. 1175-1182.]. Although the preignition pressure-time histories varied with the shock-tube loading protocol (e.g., cleaning and passivating), the ignition delay times were not significantly affected. Ignition delay time measurements were also compared with the predictions of several current toluene reaction mechanisms, and updated reaction rate values were suggested to improve modeling performance.
机译:最近在甲苯点火(使用冲击管和快速压缩机)的点火延迟时间研究中,在中等温度(900-1200 K)和高压(接近50 a锡)下没有达成强烈共识。然而,在与发动机相关的条件下,甲苯的反应机理的发展和完善要求对这些点火延迟时间有准确的了解。为帮助解决此问题,我们在966至1211 K的温度范围内的高压(接近50个大气压)下测量了甲苯/空气混合物(0 = 1.0)的着火延迟时间,使用了反射冲击波背后的压力和排放测量值。发现新的点火延迟时间与Davidson等人的先前研究非常吻合。 [Davidson,D. F.,Gauthier,B. M.和Hanson,R. K.,“高压下的异辛烷/空气和甲苯/空气的短管点火测量”,燃烧学会学报,第1卷。 301,2005,第1175-1182页。]。尽管点火前的压力-时间历史随冲击管加载方案(例如清洁和钝化)而变化,但点火延迟时间并未受到明显影响。还将点火延迟时间测量值与几种当前甲苯反应机理的预测值进行了比较,并提出了更新的反应速率值以改善建模性能。

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    《Journal of propulsion and power》 |2010年第4期|P.776-783|共8页
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    Stanford University, Stanford, California 94305 Mechanical Engineering, Building 520, Room 5201.Student Member AIAA;

    rnStanford University, Stanford, California 94305 Mechanical Engineering, Building 520, Room 5201;

    rnStanford University, Stanford, California 94305 Mechanical Engineering, Building 520, Room 520 E. Fellow AIAA;

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