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The role of homogeneous chemistryduring ignition of propane combustion inPt-catalyzed microburners

机译:均相化学在铂催化微型燃烧器中丙烷燃烧着火中的作用

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The aim of this work is to numerically investigate the ignition behavior of homogeneous-heterogeneous (HH) combustion of propane in a Pt-catalyzed microbumer to delineate the role of homogeneous chemistry during cold-start ignition. A two dimensional model with one-step homogeneous and catalytic mechanisms in a parallel-plate microbumer is considered. The ignition characteristics (ignition temperature and ignition time) are explored for catalytic microreactor with and without homogeneous chemistry. We show that the catalytic reaction lights-off first, followed by the homogeneous reaction. Consequently, the homogeneous chemistry does not affect the ignition behavior of the catalytic microbumer. The effect of inlet velocity, wall thermal conductivity and gap size on ignition characteristics is explored. The ignition characteristics are not affected by homogeneous chemistry even at larger gap sizes, despite the fact that the homogeneous contribution at steady state increases with increasing gap size of the microbumer.
机译:这项工作的目的是数值研究在Pt催化的微单体中丙烷的均相非均相(HH)燃烧的点火行为,以描述均质化学在冷启动点火过程中的作用。考虑在平行板微燃烧器中具有一步均相和催化机理的二维模型。研究了具有和不具有均相化学性质的催化微反应器的着火特性(着火温度和着火时间)。我们表明,催化反应首先熄灭,然后进行均相反应。因此,均相化学不会影响催化微单体的着火行为。探讨了进气速度,壁导热系数和间隙尺寸对点火特性的影响。即使在较大的间隙尺寸下,点火特性也不受均匀化学作用的影响,尽管事实是,随着微单体间隙尺寸的增加,稳态下的均匀作用也会增加。

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