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Flickering behavior of turbulent buoyant fires using large-eddy simulation

journal contribution
posted on 2024-11-01, 04:24 authored by Chi Pok CheungChi Pok Cheung, G.H Yeoh, A Cheung, Richard Yuen, S.M Lo
A numerical study investigating the flickering behavior of a turbulent buoyant fire is conducted using large-eddy simulation to examine coupled turbulence, combustion, soot chemistry, and radiation effects. The three-dimensional, Favre-filtered, compressible mass, momentum, energy, and mixture fraction and its scalar variance conservation equations are closed using the Smagorinsky subgrid-scale (SGS) turbulence model. A two-stage predictor-corrector methodology for low-Mach-number compressible flows is adopted. Formation of large-scale vortical structures is well captured, with the predicted puffing frequency agreeing closely with experimentally determined frequencies. Comparisons of instantaneous, mean, and root-mean-square quantities also show qualitative agreement against other experimental data.

History

Journal

Numerical Heat Transfer Part A: Applications

Volume

52

Start page

679

End page

712

Total pages

34

Publisher

Taylor and Francis

Place published

Philadelphia

Language

English

Copyright

Copyright © Taylor & Francis Group, LLC

Former Identifier

2006005793

Esploro creation date

2020-06-22

Fedora creation date

2013-12-02