Advantages of the adoption of a generalized flame displacement velocity as a central element of flamelet theory

Fuente: arXiv
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Autores principales: Olguin, Hernan, Domingo, Pascale, Vervisch, Luc, Hasse, Christian, Scholtissek, Arne
Formato: Preprint
Publicado: 2024
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author Olguin, Hernan
Domingo, Pascale
Vervisch, Luc
Hasse, Christian
Scholtissek, Arne
author_facet Olguin, Hernan
Domingo, Pascale
Vervisch, Luc
Hasse, Christian
Scholtissek, Arne
contents In combustion theory, flames are usually described in terms of the dynamics of iso-surfaces of a specific scalar. The flame displacement speed is then introduced as a local variable quantifying the progression of these iso-surfaces relative to the flow field. While formally defined as a scalar, the physical meaning of this quantity allows relating it with a vector pointing along the normal direction of the scalar iso-surface. In this work, this one-dimensional concept is extended by the introduction of a generalized flame displacement velocity vector, which is associated with the dynamics of iso-surfaces of two generic scalars, $α$ and $β$. It is then shown how a new flamelet paradigm can be built around this velocity vector, which leads to a very compact and generic set of two-dimensional flamelet equations for thermochemical quantities and the conditioning scalar gradients, $g_α = \lvert \nabla α\rvert$ and $g_β = \lvert \nabla β\rvert$. The most important features of the developed framework are discussed in the context of partially-premixed flames, which provides significant insights into several aspects of the theory, including the nature of the different contributions to the flamelet equations for the conditioning scalar gradients and the fact that different flamelet coordinate systems (orthogonal and non-orthogonal) can be characterized by the same flame displacement velocity vector. This approach opens an entire spectrum of possibilities for the definition of new two-dimensional composition spaces, which represents a very promising basis for the development of new variants of flamelet theory.
format Preprint
id arxiv_https___arxiv_org_abs_2411_05756
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Advantages of the adoption of a generalized flame displacement velocity as a central element of flamelet theory
Olguin, Hernan
Domingo, Pascale
Vervisch, Luc
Hasse, Christian
Scholtissek, Arne
Fluid Dynamics
In combustion theory, flames are usually described in terms of the dynamics of iso-surfaces of a specific scalar. The flame displacement speed is then introduced as a local variable quantifying the progression of these iso-surfaces relative to the flow field. While formally defined as a scalar, the physical meaning of this quantity allows relating it with a vector pointing along the normal direction of the scalar iso-surface. In this work, this one-dimensional concept is extended by the introduction of a generalized flame displacement velocity vector, which is associated with the dynamics of iso-surfaces of two generic scalars, $α$ and $β$. It is then shown how a new flamelet paradigm can be built around this velocity vector, which leads to a very compact and generic set of two-dimensional flamelet equations for thermochemical quantities and the conditioning scalar gradients, $g_α = \lvert \nabla α\rvert$ and $g_β = \lvert \nabla β\rvert$. The most important features of the developed framework are discussed in the context of partially-premixed flames, which provides significant insights into several aspects of the theory, including the nature of the different contributions to the flamelet equations for the conditioning scalar gradients and the fact that different flamelet coordinate systems (orthogonal and non-orthogonal) can be characterized by the same flame displacement velocity vector. This approach opens an entire spectrum of possibilities for the definition of new two-dimensional composition spaces, which represents a very promising basis for the development of new variants of flamelet theory.
title Advantages of the adoption of a generalized flame displacement velocity as a central element of flamelet theory
topic Fluid Dynamics
url https://arxiv.org/abs/2411.05756