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首页> 外文期刊>International Journal of Chemical Kinetics >Reduction of Large Detailed Chemical Kinetic Mechanisms for Autoignition Using Joint Analyses of Reaction Rates and Sensitivities
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Reduction of Large Detailed Chemical Kinetic Mechanisms for Autoignition Using Joint Analyses of Reaction Rates and Sensitivities

机译:使用反应速率和敏感性的联合分析,减少大型详细的自燃化学动力学机理

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摘要

This study describes a new technique of reduction of detailed mechanisms for autoignition.It is based on two analysis methods.An analysis of reaction rates is coupled to an analysis of reaction sensitivity for the detection of redundant reactions.Thresholds asso- ciated with the two analyses have a great influence on the size and efficiency of the reduced mechanism.Rules of selection of the thresholds are defined.The reduction technique has been successfully applied to detailed autoignition mechanisms of two reference hydrocarbons:n-heptane and isooctane.The efficiency of the technique and the ability of the reduced mecha- nisms to reproduce well the results generated by the full mechanism are discussed.A speedup of calculations by a factor of 5.9 for n-heptane mechanism and by a factor of 16.7 for isooctane mechanism is obtained without losing accuracy of the prediction of autoignition delay times and concentrations of intermediate species.
机译:这项研究基于两种分析方法,描述了一种减少自燃详细机理的新技术,即将反应速率的分析与反应灵敏度的分析相结合,以检测多余的反应。两种分析的阈值对还原机理的大小和效率有很大影响。定义了阈值的选择规则。还原技术已成功应用于正庚烷和异辛烷这两种参考烃的详细自燃机理。并讨论了还原机制能够很好地再现完整机理所产生的结果的能力。在不损失精度的情况下,正庚烷机理的计算速度提高了5.9倍,异辛烷机理的计算速度提高了16.7倍自燃延迟时间和中间物质浓度的预测

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