Dependence of methane laminar flame propagation speed on the pressure and initial temperature

The paper presents the results that allowed obtaining the dependence of laminar flame propagation speed Sl on the equivalence ratio for a wide range of pressures and temperatures during methane combustion. A literature review was carried out to summarize the experimental data on the measurement of t...

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Main Authors: S. V. Lukachev, S. G. Matveev, I. A. Zubrilin, A. V. Sigidaev
Format: Article
Language:English
Published: Samara National Research University 2016-12-01
Series:Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение
Subjects:
Online Access:https://journals.ssau.ru/vestnik/article/viewFile/3338/3239
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spelling doaj-8c8b59c1bbcc4a4286044c87a73deb152021-08-25T09:12:04ZengSamara National Research UniversityВестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение2542-04532541-75332016-12-0115422423410.18287/2541-7533-2016-15-4-224-2343124Dependence of methane laminar flame propagation speed on the pressure and initial temperatureS. V. Lukachev0S. G. Matveev1I. A. Zubrilin2A. V. Sigidaev3Samara National Research UniversitySamara National Research UniversitySamara National Research UniversitySamara National Research UniversityThe paper presents the results that allowed obtaining the dependence of laminar flame propagation speed Sl on the equivalence ratio for a wide range of pressures and temperatures during methane combustion. A literature review was carried out to summarize the experimental data on the measurement of the Sl. The Sl was calculated using a kinetic mechanism GRI 3.0 within the required pressure and temperature range. The calculation results were generalized in the MATLAB software product to verify the Sl power dependencies on pressure and initial temperature. The results of calculation on the basis of the obtained approximating dependence were compared with the experimental data and results obtained by other authors. It was found that the exponents of power for the dependency on pressure and temperature are described not by constants or linear relations, but by second-degree equations on the fuel-air ratio. The results can be used in three-dimensional simulation of combustion processes and in calculations performed using engineering practices.https://journals.ssau.ru/vestnik/article/viewFile/3338/3239methane laminar flame propagation velocitykinetic mechanisms of chemical reactionsvalidation
collection DOAJ
language English
format Article
sources DOAJ
author S. V. Lukachev
S. G. Matveev
I. A. Zubrilin
A. V. Sigidaev
spellingShingle S. V. Lukachev
S. G. Matveev
I. A. Zubrilin
A. V. Sigidaev
Dependence of methane laminar flame propagation speed on the pressure and initial temperature
Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение
methane laminar flame propagation velocity
kinetic mechanisms of chemical reactions
validation
author_facet S. V. Lukachev
S. G. Matveev
I. A. Zubrilin
A. V. Sigidaev
author_sort S. V. Lukachev
title Dependence of methane laminar flame propagation speed on the pressure and initial temperature
title_short Dependence of methane laminar flame propagation speed on the pressure and initial temperature
title_full Dependence of methane laminar flame propagation speed on the pressure and initial temperature
title_fullStr Dependence of methane laminar flame propagation speed on the pressure and initial temperature
title_full_unstemmed Dependence of methane laminar flame propagation speed on the pressure and initial temperature
title_sort dependence of methane laminar flame propagation speed on the pressure and initial temperature
publisher Samara National Research University
series Вестник Самарского университета: Аэрокосмическая техника, технологии и машиностроение
issn 2542-0453
2541-7533
publishDate 2016-12-01
description The paper presents the results that allowed obtaining the dependence of laminar flame propagation speed Sl on the equivalence ratio for a wide range of pressures and temperatures during methane combustion. A literature review was carried out to summarize the experimental data on the measurement of the Sl. The Sl was calculated using a kinetic mechanism GRI 3.0 within the required pressure and temperature range. The calculation results were generalized in the MATLAB software product to verify the Sl power dependencies on pressure and initial temperature. The results of calculation on the basis of the obtained approximating dependence were compared with the experimental data and results obtained by other authors. It was found that the exponents of power for the dependency on pressure and temperature are described not by constants or linear relations, but by second-degree equations on the fuel-air ratio. The results can be used in three-dimensional simulation of combustion processes and in calculations performed using engineering practices.
topic methane laminar flame propagation velocity
kinetic mechanisms of chemical reactions
validation
url https://journals.ssau.ru/vestnik/article/viewFile/3338/3239
work_keys_str_mv AT svlukachev dependenceofmethanelaminarflamepropagationspeedonthepressureandinitialtemperature
AT sgmatveev dependenceofmethanelaminarflamepropagationspeedonthepressureandinitialtemperature
AT iazubrilin dependenceofmethanelaminarflamepropagationspeedonthepressureandinitialtemperature
AT avsigidaev dependenceofmethanelaminarflamepropagationspeedonthepressureandinitialtemperature
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