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- W2022609972 abstract "A computer simulation of an opposed-jet methane/oxygen/nitrogen diffusion flame is presented which includes a realistic set of chemical reactions and realistic transport properties. The overall continuity equation and momentum balance are modeled in an approximate manner. The predicted concentration and temperature profiles agree satisfactorily with the available experimental information. It is shown that replacing the differential equations by their finite difference forms is a convenient way to handle this kind of two point boundary condition problem. An electric field is imposed on the flame by introducing a simplified model of the “ionic wind” which neglects any effects of electrons. Under these circumstances the concentration and temperature profiles are predicted to shift toward the cathode, but most do not change appreciably in magnitude. Flames at two temperatures are studied, with concentrations of NO predicted to be much higher in the higher temperature flame. Several reactions involving NO2 did not affect the concentration of NO calculated using only the Zeldovich mechanism." @default.
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- W2022609972 date "1972-12-01" @default.
- W2022609972 modified "2023-10-16" @default.
- W2022609972 title "A mathematical model of the opposed-jet diffusion flame: Effect of an electric field on concentration and temperature profiles" @default.
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- W2022609972 doi "https://doi.org/10.1016/0010-2180(72)90005-3" @default.
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