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Titlebook: Mathematical Modeling in Combustion and Related Topics; Claude-Michel Brauner (ARW-Director),Claudine Schm Book 1988 Martinus Nijhoff Publ

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0168-132X , flame theory, experimental and industrial aspects, complex chemistry, and turbulent combustion. It brought together researchers and engineers from University 978-94-010-7745-3978-94-009-2770-4Series ISSN 0168-132X
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Grid Requirements Due to the Inner Structure of Premixed Hydrocarbon Flamesation of only 12 elementary reactions was necessary to provide a satisfactory description of lean to stoichiometric premixed methane flames /1/ and methane-air diffusion flames /2/. In /3/ reduced four- and five-step mechanisms were derived for methane-, methanol-, and propane flames, covering the e
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Solution of Two-Dimensional Axisymmetric Laminar Diffusion Flames by Adaptive Boundary Value Methodsg of such flames corresponds to the local extinction of a specific highly curved portion of the flame front. An understanding of the mechanisms that cause this behavior is important in flame stability and in determining flammability limits for flames exhibiting strong curvature [1]. In addition, mos
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Mathematical Modeling in the Age of Computing: Is It Redundant?rwise sensible men and women—to suggest, in some cases explicitly, that this new age of computing will write the epitaph for mathematical modeling. I know of no such claims in print, and so risk the charge of raising a straw man, but I am content to let the reader’s own experience provide the answer to whether or not such a charge is accurate.
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