Muharam Yuswan, Warnatz Jürgen
Department of Chemical Engineering, University of Indonesia, Kampus UI Depok 16424, Indonesia.
Phys Chem Chem Phys. 2007 Aug 21;9(31):4218-29. doi: 10.1039/b703415f. Epub 2007 Jul 17.
A mechanism generator code to automatically generate mechanisms for the oxidation of large hydrocarbons has been successfully modified and considerably expanded in this work. The modification was through (1) improvement of the existing rules such as cyclic-ether reactions and aldehyde reactions, (2) inclusion of some additional rules to the code, such as ketone reactions, hydroperoxy cyclic-ether formations and additional reactions of alkenes, (3) inclusion of small oxygenates, produced by the code but not included in the handwritten C(1)-C(4) sub-mechanism yet, to the handwritten C(1)-C(4) sub-mechanism. In order to evaluate mechanisms generated by the code, simulations of observed results in different experimental environments have been carried out. Experimentally derived and numerically predicted ignition delays of n-heptane-air and n-decane-air mixtures in high-pressure shock tubes in a wide range of temperatures, pressures and equivalence ratios agree very well. Concentration profiles of the main products and intermediates of n-heptane and n-decane oxidation in jet-stirred reactors at a wide range of temperatures and equivalence ratios are generally well reproduced. In addition, the ignition delay times of different normal alkanes was numerically studied.
在本研究中,一个用于自动生成大型碳氢化合物氧化反应机理的代码生成器已成功修改并大幅扩展。修改内容包括:(1)改进现有规则,如环醚反应和醛反应;(2)在代码中纳入一些额外规则,如酮反应、氢过氧环醚的形成以及烯烃的额外反应;(3)将代码生成但尚未包含在手写C(1)-C(4)子机理中的小分子含氧化合物纳入手写C(1)-C(4)子机理。为了评估由该代码生成的反应机理,已针对不同实验环境下的观测结果进行了模拟。在广泛的温度、压力和当量比范围内,实验得出的以及数值预测的正庚烷-空气和正癸烷-空气混合物在高压激波管中的着火延迟时间吻合得非常好。在广泛的温度和当量比范围内,喷射搅拌反应器中正庚烷和正癸烷氧化的主要产物和中间体的浓度分布总体上得到了很好的再现。此外,还对不同正构烷烃的着火延迟时间进行了数值研究。