Backward boundary layers in downward flame spreadThe gas-phase combustion of a vertical fuel slab pyrolyzing at a finite rate under downward flame spread conditions is investigated theoretically. The backward boundary layer character of the flow is exploited, and a transformation that shifts the singularity associated with boundary-layer equations to a location, upstream of flame lift-off, where the surface temperature is nearly ambient, is employed. The boundary-layer flow is matched asymptotically for large Grashof number to a potential flow that allows the flow induced by the flame and along the upstream surface of the fuel bed to be calculated. Gas-phase temperature and velocity predictions are compared to experiment, and although analysis of the gas phase is emphasized, an approximate spread rate, based on a solid-phase energy balance, is calculated.
Document ID
19860038055
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Vedha-Nayagam, M. (Kentucky Univ. Lexington, KY, United States)
Altenkirch, R. A. (Kentucky, University Lexington, United States)