CV


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Javad Khadem

Javad Khadem

Associate Professor

دانشکده/پردیس: Engineering

گروه/دانشکده Mechanical Engineering

Degree: Ph.D

Birth Year: 1970

CV
FA
Javad Khadem

Associate Professor Javad Khadem

دانشکده/پردیس: Engineering - گروه/دانشکده Mechanical Engineering Degree: Ph.D | Birth Year: 1970 |

Investigation of unsteady premixed micro/macro counterflow flames for lean to rich methane/air mixture

AuthorsJavad Khadem
JournalJournal of Energy Resources Technology-ASME
Page number1-10
Serial number143
Volume number5
IF0.227
Paper TypeFull Paper
Published At2021
Journal GradeISI
Journal TypeTypographic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR،Scopus
KeywordsCounterflow Flame, Numerical Modeling, Premixed Methane, Air Mixture, Unsteady Solution, Quasi, Steady Equilibrium.

Abstract

In the current work, an unsteady analysis of methane/air premixed counterflow flame is carried out for different flame conditions and stability parameters considering different strain rate values. The results are presented at unsteady and final steady conditions and the impact of time-dependent regimes and variations in equivalence ratio, from lean flame to rich one are analysed. The governing equations including continuity, momentum, energy, and species are numerically solved with a coupled of simple and Piso algorithm. It is also found that when the strain rate value is 1000s-1, for flame stability, the hydraulic distance of the microchannel must be at least 0.05mm. Increasing the strain rate results in decreasing the time of stabilizing temperature distribution with a faster quasi-steady equilibrium. The necessity of time dependent analysis is to comprehend the variations in main factors of flame structure before reaching the finalized steady state condition. Therefore, by designing an intermittent automatic valve, if the flow stops in time period of 0.0025s and starts again, the formation of NO2 and CO2 will be reduced about 50% and 9%, respectively, in a case with a=100s-1.