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Presumed PDF Modeling of Early Flame Propagation in Moderate to Intense Turbulence EnvironmentsThe present paper describes the results obtained from a one-dimensional time dependent numerical technique that simulates early flame propagation in a moderate to intense turbulent environment. Attention is focused on the development of a spark-ignited, premixed, lean methane/air mixture with the unsteady spherical flame propagating in homogeneous and isotropic turbulence. A Monte-Carlo particle tracking method, based upon the method of fractional steps, is utilized to simulate the phenomena represented by a probability density function (PDF) transport equation. Gaussian distributions of fluctuating velocity and fuel concentration are prescribed. Attention is focused on three primary parameters that influence the initial flame kernel growth: the detailed ignition system characteristics, the mixture composition, and the nature of the flow field. The computational results of moderate and intense isotropic turbulence suggests that flames within the distributed reaction zone are not as vulnerable, as traditionally believed, to the adverse effects of increased turbulence intensity. It is also shown that the magnitude of the flame front thickness significantly impacts the turbulent consumption flame speed. Flame conditions studied have fuel equivalence ratio s in the range phi = 0.6 to 0.9 at standard temperature and pressure.
Document ID
20050198897
Acquisition Source
Glenn Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Carmen, Christina
(Alabama Univ. Huntsville, AL, United States)
Feikema, Douglas A.
(NASA Glenn Research Center Cleveland, OH, United States)
Date Acquired
September 7, 2013
Publication Date
November 18, 2003
Subject Category
Statistics And Probability
Report/Patent Number
E-14446
Report Number: E-14446
Funding Number(s)
OTHER: 22-101-42-02
Distribution Limits
Public
Copyright
Public Use Permitted.
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