Fluids (Jan 2021)

Influence of a Standing Wave Flow-Field on the Dynamics of a Spray Diffusion Flame

  • J. Barry Greenberg,
  • David Katoshevski

DOI
https://doi.org/10.3390/fluids6010027
Journal volume & issue
Vol. 6, no. 1
p. 27

Abstract

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A theoretical investigation of the influence of a standing wave flow-field on the dynamics of a laminar two-dimensional spray diffusion flame is presented for the first time. The mathematical analysis permits mild slip between the droplets and their host surroundings. For the liquid phase, the use of a small Stokes number as the perturbation parameater enables a solution of the governing equations to be developed. Influence of the standing wave flow-field on droplet grouping is described by a specially constructed modification of the vaporization Damkohler number. Instantaneous flame front shapes are found via a solution for the usual Schwab–Zeldovitch parameter. Numerical results obtained from the analytical solution uncover the strong bearing that droplet grouping, induced by the standing wave flow-field, can have on flame height, shape, and type (over- or under-ventilated) and on the existence of multiple flame fronts.

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