Response of Flame Thickness and Propagation Speed Under Intense Turbulence in Spatially Developing Lean Premixed Methane-air Jet Flames

Response of Flame Thickness and Propagation Speed Under Intense Turbulence in Spatially Developing Lean Premixed Methane-air Jet Flames
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Total Pages: 13
Release: 2015
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In this study, direct numerical simulations of three-dimensional spatially-developing turbulent Bunsen flames were performed at three different turbulence intensities. The simulations were performed using a reduced methane-air chemical mechanism which was specifically tailored for the lean premixed conditions simulated here. A planar-jet turbulent Bunsen flame configuration was used in which turbulent preheated methane-air mixture at 0.7 equivalence ratio issued through a central jet and was surrounded by a hot laminar coflow of burned products. The turbulence characteristics at the jet inflow were selected such that combustion occured in the thin reaction zones (TRZ) regime. At the lowest turbulence intensity, the conditions fall on the boundary between the TRZ regime and the corrugated flamelet regime, and progressively moved further into the TRZ regime by increasing the turbulent intensity. The data from the three simulations was analyzed to understand the effect of turbulent stirring on the flame structure and thickness. Statistical analysis of the data showed that the thermal preheat layer of the flame was thickened due to the action of turbulence, but the reaction zone was not significantly affected. A global and local analysis of the burning velocity of the flame was performed to compare the different flames. Detailed statistical averages of the flame speed were also obtained to study the spatial dependence of displacement speed and its correlation to strain rate and curvature.


Response of Flame Thickness and Propagation Speed Under Intense Turbulence in Spatially Developing Lean Premixed Methane-air Jet Flames
Language: en
Pages: 13
Authors:
Categories:
Type: BOOK - Published: 2015 - Publisher:

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In this study, direct numerical simulations of three-dimensional spatially-developing turbulent Bunsen flames were performed at three different turbulence inten
Response of Flame Thickness and Propagation Speed Under Intense Turbulence in Spatially Developing Lean Premixed Methane{u2013}air Jet Flames
Language: en
Pages: 13
Authors:
Categories:
Type: BOOK - Published: 2015 - Publisher:

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Direct numerical simulations of three-dimensional spatially-developing turbulent Bunsen flames were performed at three different turbulence intensities. We perf
Modeling and Simulation of Turbulent Combustion
Language: en
Pages: 663
Authors: Santanu De
Categories: Science
Type: BOOK - Published: 2017-12-12 - Publisher: Springer

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This book presents a comprehensive review of state-of-the-art models for turbulent combustion, with special emphasis on the theory, development and applications
Advanced Turbulent Combustion Physics and Applications
Language: en
Pages:
Authors: N. Swaminathan
Categories: Technology & Engineering
Type: BOOK - Published: 2022-01-06 - Publisher: Cambridge University Press

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Explore a thorough and up to date overview of the current knowledge, developments and outstanding challenges in turbulent combustion and application. The balanc
Turbulent Premixed Flames
Language: en
Pages: 447
Authors: Nedunchezhian Swaminathan
Categories: Technology & Engineering
Type: BOOK - Published: 2011-04-25 - Publisher: Cambridge University Press

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A work on turbulent premixed combustion is important because of increased concern about the environmental impact of combustion and the search for new combustion