论文标题

多用途降低乙醇燃烧机制

A Multipurpose Reduced Mechanism for Ethanol Combustion

论文作者

Millán-Merino, Alejandro, Fernández-Tarrazo, Eduardo, Sánchez-Sanz, Mario, Williams, Forman A.

论文摘要

在我们先前关于甲醇的工作中,开发了相同的哲学线,开发了新的多功能骨骼骨骼和降低的乙醇燃烧的化学动力机制。由此产生的骨骼机制包含66种反应,其中只有31种在31种中可逆,相关的降低机制包含16种总体反应,通过放置\ ce {ch3choh},\ ce {ch2ch2oh},ch2ch2oh},\ ce {ch3ce {ch3ce},\ ch2CE},\ ce {ch2CE {ce2Ce { \ Ce {C2H3},\ Ce {C2H5},\ Ce {C2H6},\ Ce {S-CH2},\ Ce {T-CH2},\ Ce {Ce {Ce {ch4},\ ce {Ce {Ce {ch2OH},\ ce {Ce {ch3O}对于降低的机制,安排了稳态关系和速率表达式,以便可以在没有迭代的情况下依次进行计算。与实验结果进行自动登录,层流燃烧速度以及逆流结构和灭绝的比较,包括与257步,54个物种详细的圣地亚哥详细机制的比较,以及文献中的其他五个机制,以及通过与Skeletal和降低的机制相比,将SAN DIEGO的机制和降低的机制相比,这些机制,这些机制,这些机制,这些机制,这些机制,这些机制的成本,这些机制,这些机制,这些机制,这些机制,这些机制,他们降低了San Diego的效果,他们降低了这些机制,他们降低了这些机制,他们降低了,他们降低了San Diego的作用,他们将其降低。分别为80 \%。定义并采用了计算时间和远离实验值的范围的度量。除了有助于改善对机制的理解外,衍生的简化可能在各种计算研究中都有用。

New multipurpose skeletal and reduced chemical-kinetic mechanisms for ethanol combustion are developed, along the same philosophical lines followed in our previous work on methanol. The resulting skeletal mechanism contains 66 reactions, only 19 of which are reversible, among 31 species, and the associated reduced mechanism contains 14 overall reactions among 16 species, obtained from the skeletal mechanism by placing \ce{CH3CHOH}, \ce{CH2CH2OH}, \ce{CH3CO}, \ce{CH2CHO}, \ce{CH2CO}, \ce{C2H3}, \ce{C2H5}, \ce{C2H6}, \ce{S-CH2}, \ce{T-CH2}, \ce{CH4}, \ce{CH2OH}, \ce{CH3O}, \ce{HCO}, and \ce{O} in steady state. For the reduced mechanism, the steady-state relations and rate expressions are arranged so that computations can be made sequentially without iteration. Comparison with experimental results for autoignition, laminar burning velocities, and counterflow flame structure and extinction, including comparisons with the 257-step, 54-species detailed San Diego Mechanism and five other mechanisms in the literature, support the utility of the skeletal and reduced mechanisms, showing, for example, that, in comparison with the San Diego mechanism, they decrease the computational cost by 70\% and 80\%, respectively. Measures of computation times and of extents of departures from experimental values are defined and employed in evaluating results. Besides contributing to improvements in understanding of the mechanisms, the derived simplifications may prove useful in a variety of computational studies.

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