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- W1972004305 abstract "Abstract In this study, a cylindrical 2-D confined coflow methane/air jet diffusion flame was numerically simulated using a reduced 8-step gas phase chemical kinetics mechanism involving 12 major species. The soot model employed a 4-step reduced reaction mechanism and radiation from gas products and soot was modeled using the S6 discrete ordinates method. The flow field and major species concentrations from the simulation were compared with experimental data for atmospheric pressure conditions. Higher pressure simulations were performed which showed that the increased density at elevated pressure results in a higher soot concentration. Although at increased pressure both the rates of particle nucleation and agglomeration increased, the net rate for the soot particle number density decreased, resulting in lower particle number densities at higher pressure as compared with atmospheric conditions. It was also shown that the environment pressure affected the radiative heat feedback to the fuel base through the soot concentration." @default.
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- W1972004305 title "Soot Production Rate Calculations at Elevated Pressure in a Methane-Air Jet Diffusion Flame" @default.
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- W1972004305 doi "https://doi.org/10.1080/00102209808952056" @default.
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