A detailed kinetic mechanism of hydrocarbon oxidation and pyrolysis, coupled with a submechanism of particle inception, coagulation, surface growth, and oxidation is used to simulate the formation of particulates in a coflowing diffusion flame of ethylene. The model predicts the volume fraction of total particulates, as measured by broadband UV-visible extinction, in different flame locations and particularly in the wing regions of the flame. The model also predicts, for the first time, particle diameter in the different regions of the flame showing the formation of nanosized precursor particles in the fuel side of diffusion flames.

Modeling of Particulate Formation in a co-Flowing Diffusion Flame / D'Anna, Andrea; Mazzotti, Giuseppe; G., Kent. - In: COMBUSTION SCIENCE AND TECHNOLOGY. - ISSN 0010-2202. - STAMPA. - 176(5-6):(2004), pp. 753-767. [10.1080/00102200490428369]

Modeling of Particulate Formation in a co-Flowing Diffusion Flame

D'ANNA, ANDREA;MAZZOTTI, GIUSEPPE;
2004

Abstract

A detailed kinetic mechanism of hydrocarbon oxidation and pyrolysis, coupled with a submechanism of particle inception, coagulation, surface growth, and oxidation is used to simulate the formation of particulates in a coflowing diffusion flame of ethylene. The model predicts the volume fraction of total particulates, as measured by broadband UV-visible extinction, in different flame locations and particularly in the wing regions of the flame. The model also predicts, for the first time, particle diameter in the different regions of the flame showing the formation of nanosized precursor particles in the fuel side of diffusion flames.
2004
Modeling of Particulate Formation in a co-Flowing Diffusion Flame / D'Anna, Andrea; Mazzotti, Giuseppe; G., Kent. - In: COMBUSTION SCIENCE AND TECHNOLOGY. - ISSN 0010-2202. - STAMPA. - 176(5-6):(2004), pp. 753-767. [10.1080/00102200490428369]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/203173
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