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Uncertainty quantification of reaction mechanisms accounting for correlations introduced by rate rules and fitted Arrhenius parameters

机译:考虑到速率规则和拟合的Arrhenius参数引入的相关性的反应机理的不确定性量化

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摘要

We study correlations among uncertain Arrhenius rate parameters in a chemical model for hydrocarbon fuel-air combustion. We consider correlations induced by the use of rate rules for modeling reaction rate constants, as well as those resulting from fitting rate expressions to empirical measurements arriving at a joint probability density for all Arrhenius parameters. We focus on homogeneous ignition in a fuel-air mixture at constant-pressure. We outline a general methodology for this analysis using polynomial chaos and Bayesian inference methods. We examine the uncertainties in both the Arrhenius parameters and in predicted ignition time, outlining the role of correlations, and considering both accuracy and computational efficiency.
机译:我们研究碳氢燃料-空气燃烧的化学模型中不确定的Arrhenius速率参数之间的相关性。我们考虑了使用速率规则对反应速率常数进行建模,以及将速率表达式拟合到所有Arrhenius参数的联合概率密度而得出的经验测量值所产生的相关性。我们专注于在恒压下在燃料-空气混合物中均匀点火。我们概述了使用多项式混沌和贝叶斯推断方法进行此分析的一般方法。我们检查了Arrhenius参数和预计点火时间的不确定性,概述了相关性的作用,并考虑了准确性和计算效率。

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