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A Numerical Study on Methane-Air Counterflow Diffusion Flames Part 2. Global Strain Rate  

Park, Woe Chul (Department of Safety Engineering, Pukyong National University)
Publication Information
International Journal of Safety / v.2, no.1, 2003 , pp. 12-16 More about this Journal
Abstract
In Part 1, the flame structure of the counterflow nonpremixed flames computed by using Fire Dynamics Simulator was compared with that of OPPDIF for different concentrations of methane in the fuel stream. In this study, comparisons were made for the global strain rate that is an important parameter for diffusion flames for further evaluation of FDS. At each of the three fuel concentrations, $20% CH_4+ 80% N_2, 50% CH_4 + 50% N_2, 90% CH_4 + 10% N_2$ in the fuel stream, the temperature and axial velocity profiles were investigated for the global strain rate in the range from 20 to $100s^{-1}$. Changes in flame thickness and radius were also compared with OPPDIF. There was good agreement in the temperature and axial velocity profiles between the axisymmetric simulations and the one-dimensional computations except for the regions where the flame temperature reach its peak and the axial velocity rapidly changes. The simulations of the axisymmetric flames with FDS showed that the flame thickness decreases and the flame radius increases with increasing global strain rate.
Keywords
counterflow flame; methane; global strain rate; flame thickness; flame radius;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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