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Effect of unequal fuel and oxidizer Lewis numbers on flame dynamics
Authors:Tariq Shamim  
Affiliation:aDepartment of Mechanical Engineering, The University of Michigan-Dearborn, Dearborn, MI 48128-1491, USA
Abstract:The interaction of non-unity Lewis number (due to preferential diffusion and/or unequal rates of heat and mass transfer) with the coupled effect of radiation, chemistry and unsteadiness alters several characteristics of a flame. The present study numerically investigates this interaction with a particular emphasis on the effect of unequal and non-unity fuel and oxidizer Lewis numbers in a transient diffusion flame. The unsteadiness is simulated by considering the flame subjected to modulations in reactant concentration. Flames with different Lewis numbers (ranging from 0.5 to 2) and subjected to different modulating frequencies are considered. The results show that the coupled effect of Lewis number and unsteadiness strongly influences the flame dynamics. The impact is stronger at high modulating frequencies and strain rates, particularly for large values of Lewis numbers. Compared to the oxidizer side Lewis number, the fuel side Lewis number has greater influence on flame dynamics.
Keywords:Lewis number  Diffusion flame  Flame dynamics  Preferential diffusion  Simulations
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