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Radiation turbulence interactions in pulverized coal flames: Chaotic map models of soot fluctuations in turbulent diffusion flames. Quarterly report, October 1995--December 1995
Author(s) -
J. M. McDonough,
M. Pınar Mengüç,
S. Mukerji,
S. Swabb,
S. Manickavasagam,
S. Ghosal
Publication year - 1995
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/374433
Subject(s) - turbulence , diffusion , soot , turbulent diffusion , statistical physics , mechanics , chaotic , physics , diffusion flame , series (stratigraphy) , volume fraction , computational physics , thermodynamics , chemistry , combustion , combustor , geology , computer science , paleontology , organic chemistry , artificial intelligence
In this paper, we introduce a methodology to characterize soot volume fraction fluctuations in turbulent diffusion flames via chaotic maps. The approach is based on the hypothesis that the fluctuations of properties in turbulent flames is deterministic in nature, rather than statistical. Out objective is to develop models to mimic these fluctuations. The models will be used eventually in comprehensive algorithms to study the true physics of turbulent flames and the interaction of turbulence with radiation. To this extent, we measured the time series of soot scattering coefficient in an ethylene diffusion flame from light scattering experiments. Following this, corresponding power spectra and delay maps were calculated. It was shown that if the data were averaged, the characteristics of the fluctuations were almost completely washed out. The psds from experiments were successfully modeled using a series of logistic maps

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