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Combustion of a single droplet in the presence of an oscillating flow
Authors:Man Yeong Ha  Sun Kie Kim
Affiliation:1. Research Institute of Mechanical Technology School of Mechanical Engineering, Pusan National University, 30 Changjeon-Dong. Kumjeong-Ku, 609-735, Pusan, Korea
Abstract:The two-dimensional, unsteady, laminar conservation equations for mass, momentum, energy and species transport in the gas phase are solved numerically in spherical coordinates. This is to study the heat and the mass transfer, and the combustion around a single spherical droplet. The droplet mass and momentum equations are also solved simultaneously with the gas phase equations in order to investigate the effects of droplet entrainment in the oscillating flow with and without a steady velocity. The numerical solution for a single droplet combustion gives the droplet diameter variation as well as the gas phase velocity, temperature and species concentrations as a function of time. The effects of frequency, amplitude of oscillating flow, velocity ratio of oscillating flow amplitude to the steady velocity, ambient temperature and initial droplet diameter on the droplet combustion are also investigated. The droplet burning history is not governed by thed 2-law in the presence of oscillating flow, unlike to the case under quiescent ambient conditions.
Keywords:Droplet Combustion  Oscillating Flow  Numerical Computation   d 2-Law
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