Detection of Local Extinction and Re-ignition in Non-premixed Ethylene-air Flames Using Chemical Explosive Mode Analysis

Detection of Local Extinction and Re-ignition in Non-premixed Ethylene-air Flames Using Chemical Explosive Mode Analysis
Title Detection of Local Extinction and Re-ignition in Non-premixed Ethylene-air Flames Using Chemical Explosive Mode Analysis PDF eBook
Author
Publisher
Pages 68
Release 2015
Genre
ISBN

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Direct Numerical Simulation of Extinction and Reignition in a Nonpremixed Turbulent Ethylene Jet Flame

Direct Numerical Simulation of Extinction and Reignition in a Nonpremixed Turbulent Ethylene Jet Flame
Title Direct Numerical Simulation of Extinction and Reignition in a Nonpremixed Turbulent Ethylene Jet Flame PDF eBook
Author
Publisher
Pages 20
Release 2007
Genre
ISBN

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Local Extinction and Reignition in Turbulent Nonpremixed Combustion

Local Extinction and Reignition in Turbulent Nonpremixed Combustion
Title Local Extinction and Reignition in Turbulent Nonpremixed Combustion PDF eBook
Author Paiboon Sripakagorn
Publisher
Pages 212
Release 2002
Genre Combustion
ISBN

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Numerical Investigation of the Mechanisms of Local Extinction Using Flame Kernel-Vortex Interactions

Numerical Investigation of the Mechanisms of Local Extinction Using Flame Kernel-Vortex Interactions
Title Numerical Investigation of the Mechanisms of Local Extinction Using Flame Kernel-Vortex Interactions PDF eBook
Author
Publisher
Pages
Release 2004
Genre
ISBN

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The response of premixed flames to unsteady stretch is studied via kernel-vortex interactions. In this configuration a spark ignited kernel interacts with a vortex pair of variable strength. Both detailed and simple chemistry approaches are explored. In the detailed chemistry effort a dilute Hydrogen-air mixture is used. The vortex causes significant distortion of the kernel topography. Two distinct regimes; "Breakthrough" and "Extinction" are observed. A continuous increase in flame area and volumetric reaction rate values are observed throughout interactions in the breakthrough regime. However, corresponding consumption speed values are lower than 1-D laminar flame speed values. Detailed chemistry analysis of downstream interaction at the leading edge is carried out. During intermediate stages of the interaction, the mixture in between the interacting flames shows rich burning conditions. As the interaction proceeds the pool of products expands against the counter velocity gradient imposed by the vortex. The decrease in the temperature causes a steady decrease in the rates of reaction of the chain branching reactions causing. The behavior of various reaction layers is dictated to a large extent by their arrangement across the region of interaction. A simple two-step global reaction mechanism is formulated for lean methane combustion. These simple chemistry computations are carried out in an axis-symmetric configuration in a spherical frame of reference. Four distinct regimes of interaction: 1) the no-effect regime, 2) the wrinkling regime 3) the break-through regime, and the 4) global extinction regime are observed. Interactions in the no-effect regime show only minor deviations from unperturbed kernel values. Vortices in the wrinkling regime impose substantial stretch on the kernel causing major deviations from unperturbed kernel values. A sharp drop in the flame surface area and the integrated reaction rate is observed during breakthrough. The primary mechanism.

Extinction of Propylene Flames by Diluting with Nitrogen and Carbon Dioxide and Some Observations on the Explosive Properties of Propylene

Extinction of Propylene Flames by Diluting with Nitrogen and Carbon Dioxide and Some Observations on the Explosive Properties of Propylene
Title Extinction of Propylene Flames by Diluting with Nitrogen and Carbon Dioxide and Some Observations on the Explosive Properties of Propylene PDF eBook
Author G. W. Jones
Publisher
Pages 26
Release 1938
Genre Fire extinction
ISBN

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Nonpremixed Flames in Stagnating Turbulence

Nonpremixed Flames in Stagnating Turbulence
Title Nonpremixed Flames in Stagnating Turbulence PDF eBook
Author Frédéric A. Maury
Publisher
Pages 228
Release 1992
Genre
ISBN

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The Extinction and Structure of Counterflow Premixed Flames

The Extinction and Structure of Counterflow Premixed Flames
Title The Extinction and Structure of Counterflow Premixed Flames PDF eBook
Author Jesse Keith Crump
Publisher
Pages 130
Release 1989
Genre
ISBN

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