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Titlebook: Reduced Kinetic Mechanisms for Applications in Combustion Systems; Norbert Peters,Bernd Rogg Book 1993 Springer-Verlag Berlin Heidelberg 1

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Reduced Kinetic Mechanisms for Premixed Acetylene-Air FlamesIt has been shown in a number of publications [.], [.] that the formation of acetylene is a precondition of the formation of soot in fuel rich hydrocarbon flames. Accordingly, studies of acetylene flames are closely connected with the study of PAH growth and soot formation [.].
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978-3-662-13952-3Springer-Verlag Berlin Heidelberg 1993
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Reduced Kinetic Mechanisms for Applications in Combustion Systems978-3-540-47543-9Series ISSN 0940-7677
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Premixed Ethylene/Air and Ethane/Air Flames: Reduced Mechanisms Based on Inner Iterationormed. Examples are the early experimental studies by Scholte and Vaags [.] and by Gibbs and Calcote [.], and the numerical study by Warnatz [.]. The results of recent experimental investigations are reported by Law in Chap. 2 of the present book [.]. These references should be consulted for additional literature on the subject.
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Reduced Kinetic Mechanisms for Applications in Combustion Systems
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Reduced Kinetic Mechanisms for Counterflow Methane-Air Diffusion Flamese approximations for all species, except CH., O., N., CO., H.O, CO, H. and H. Comparison of the results for the structure of the stagnation point diffusion flame, calculated using the 4-step mechanism were found to agree reasonably well with the those calculated using the detailed mechanism [.], exc
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Reduced Kinetic Mechanisms for Acetylene Diffusion Flamese not analysed diffusion flames with alkene or alkyne fuels. This is in part a reflection of the uncertainties surrounding the chemistry of such flames. Among the additional problems encountered is the formation of soot and cyclic compounds such as benzene. The former is particularly important at lo
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Reduced Kinetic Mechanisms for Propane Diffusion Flamesthe systematic theoretical investigation of propane-air diffusion flames using a planar counterflow geometry and the detailed chemistry defined in Chap. 1. Propane flames are here computed using rates of strain from 10/s to extinction at pressures ranging from 1 to 10 bar. The deduced mechanisms are
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