English

Potential-flow models for channelled two-dimensional premixed flames around near-circular obstacles

Fluid Dynamics 2010-01-27 v2

Abstract

The dynamics of two-dimensional thin premixed flames is addressed in the framework of mathematical models where the flow field on either side of the front is piecewise incompressible and vorticity-free. Flames confined in channels with asymptotically-straight impenetrable walls are considered. Beside a few free propagations along straight channels, attention is focused on flames propagating against high-speed flows and positioned near a round central obstacle, or near two symmetric bumps protruding inward. Combining conformal maps and Green's functions, a regularised generalisation of Frankel's integro-differential equation for the instantaneous front shape in each configuration is derived, and solved numerically. This produces a variety of real looking phenomena: steady fronts (symmetric or not), noise-induced sub-wrinkles, flash-back events and breathing fronts in pulsating flows. Perspectives and open mathematical/physical problems are finally evoked.

Keywords

Cite

@article{arxiv.0909.0214,
  title  = {Potential-flow models for channelled two-dimensional premixed flames around near-circular obstacles},
  author = {G. Joulin and B. Denet and H. El-Rabii},
  journal= {arXiv preprint arXiv:0909.0214},
  year   = {2010}
}

Comments

LaTeX, 17 pages, 7 figures, revised version

R2 v1 2026-06-21T13:41:13.929Z