Computational fluid dynamic on the temperature simulation of air preheat effect combustion in propane turbulent flame

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Elwina, Yunardi, Yazid Bindar

2018 IOP Conference Series: Materials Science and Engineering Vol. 345 Issue 1 Conference paper Cited by 0 SDG 7 Quartile

Abstract

this paper presents results obtained from the application of a computational fluid dynamics (CFD) code Fluent 6.3 to modelling of temperature in propane flames with and without air preheat. The study focuses to investigate the effect of air preheat temperature on the temperature of the flame. A standard k-ϵ model and Eddy Dissipation model are utilized to represent the flow field and combustion of the flame being investigated, respectively. The results of calculations are compared with experimental data of propane flame taken from literature. The results of the study show that a combination of the standard k-ϵ turbulence model and eddy dissipation model is capable of producing reasonable predictions of temperature, particularly in axial profile of all three flames. Both experimental works and numerical simulation showed that increasing the temperature of the combustion air significantly increases the flame temperature. © Published under licence by IOP Publishing Ltd.

Affiliations

Chemical Engineering Dept., State Polytechnics of Lhokseumawe, Lhokseumawe, Indonesia; Chemical Engineering Dept., Syiah Kuala University, Banda Aceh, Indonesia; Energy and of Processing System Chemical Engineering Dept., Faculty of Industrial Technology, Bandung Institute of Technology, Bandung, Indonesia

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