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Reduced chemistries with the Quantemol database (QDB)

机译:通过Quantemol数据库(QDB)减少化学反应

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Typical feed gas mixtures used in technological and other plasmas may give rise to reaction networks involving several hundred reactions.Such chemistries are often too large to be used in full reactor simulations and it is therefore desirable to construct reduced chemistry networks which mimic as closely as possible the behavior of the full chemistry but employ far fewer individual reactions and species.Constructed chemistries are available from the Quantemol database (QDB) and two approaches to constructing reduced chemistry from these chemistries based on (a) physical intuition and (b) sensitivity analysis of dominant reaction pathways,are explored.In doing this it is necessary to consider different pressure and power regimes.Reduced chemistry sets are presented for CF4/O2/N2/H2,for which 396 reactions and 52 species are reduced to 71 reactions and 26 species,and for pure O2,for which 45 reactions and 10 species are reduced to 34 reactions.
机译:在技​​术和其他等离子体中使用的典型进料气体混合物可能会导致涉及数百个反应的反应网络。此类化学物质通常太大而无法在完整的反应器模拟中使用,因此,希望构建尽可能接近模拟的还原化学网络。可以从Quantemol数据库(QDB)中获得构造的化学物质,并且可以基于(a)物理直觉和(b)敏感性分析来从这些化学物质构建还原化学物质的两种方法。在此过程中,有必要考虑不同的压力和功率范围。提出了CF4 / O2 / N2 / H2的简化化学组,将396个反应和52个物种还原为71个反应和26个物种,对于纯O2,将45个反应和10个种类还原为34个反应。

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