Modeling of 2D self-drifting flame-balls in Hele-Shaw cells
Fluid Dynamics
2023-08-17 v1 Chemical Physics
Abstract
The disintegration of near limit flames propagating through the gap of Hele-Shaw cells has recently become a subject of active research. In this paper, the flamelets resulting from the disintegration of the continuous front a reinterpreted in terms of the Zeldovich flame-balls stabilized by volumetric heat losses. A complicated free-boundary problem for 2D self-drifting near circular flamelets is reduced to a 1D model. The 1D formulation is then utilized to obtain the locus of the flamelet velocity, radius, heat losses and Lewis numbers at which the self-drifting flamelet exists.
Keywords
Cite
@article{arxiv.2308.08537,
title = {Modeling of 2D self-drifting flame-balls in Hele-Shaw cells},
author = {Jorge Yanez and Leonid Kagan and Gregory Sivashinsky and Mike Kuznetsov},
journal= {arXiv preprint arXiv:2308.08537},
year = {2023}
}
Comments
19 pages, 22 figures