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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 52, 2007 - Issue 8
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Original Articles

Flickering Behavior of Turbulent Buoyant Fires Using Large-Eddy Simulation

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Pages 679-712 | Received 17 Sep 2006, Accepted 16 Feb 2007, Published online: 25 Oct 2007

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Read on this site (5)

A. C. Y. Yuen, G. H. Yeoh, V. Timchenko, S. C. P. Cheung & T. Chen. (2016) Study of three LES subgrid-scale turbulence models for predictions of heat and mass transfer in large-scale compartment fires. Numerical Heat Transfer, Part A: Applications 69:11, pages 1223-1241.
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Yuan Gao & Nilanjan Chakraborty. (2016) Modeling of Lewis number dependence of scalar dissipation rate transport for Large Eddy Simulations of turbulent premixed combustion. Numerical Heat Transfer, Part A: Applications 69:11, pages 1201-1222.
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A. C. Y. Yuen, G. H. Yeoh, V. Timchenko & T. Barber. (2015) LES and Multi-Step Chemical Reaction in Compartment Fires. Numerical Heat Transfer, Part A: Applications 68:7, pages 711-736.
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Tien-Mo Shih, Martinus Arie & Derrick Ko. (2011) Literature Survey of Numerical Heat Transfer (2000–2009): Part II. Numerical Heat Transfer, Part A: Applications 60:11-12, pages 883-1096.
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A. L. K. Cheung, E. W. M. Lee, R. K. K. Yuen, G. H. Yeoh & S. C. P. Cheung. (2007) Capturing the Pulsation Frequency of a Buoyant Pool Fire using the Large Eddy Simulation Approach. Numerical Heat Transfer, Part A: Applications 53:6, pages 561-576.
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Articles from other publishers (23)

Xiang Fang, Anthony Chun Yin Yuen, Eric Wai Ming Lee, Jiyuan Tu & Sherman Cheung. (2022) Capturing the flame structure and the transition process of the fire whirl using two combustion kinetic considerations. International Journal of Numerical Methods for Heat & Fluid Flow 32:10, pages 3360-3387.
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Anthony Chun Yin Yuen, Ivan Miguel De Cachinho Cordeiro, Timothy Bo Yuan Chen, Qian Chen, Hengrui Liu & Guan Heng Yeoh. (2021) Multiphase CFD modelling for enclosure fires—A review on past studies and future perspectives. Experimental and Computational Multiphase Flow 4:1, pages 1-25.
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Chunxiang Liu, Mehdi Jangi, Jie Ji, Longxing Yu & Long Ding. (2021) Experimental and numerical study of the effects of ullage height on plume flow and combustion characteristics of pool fires. Process Safety and Environmental Protection 151, pages 208-221.
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Xiang Fang, Anthony Chun Yin Yuen, Guan Heng Yeoh, Eric Wai Ming Lee & Sherman Chi P. Cheung. (2020) Capturing the Swirling Vortex and the Impact of Ventilation Conditions on Small-Scale Fire Whirls. Applied Sciences 10:10, pages 3428.
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Nobuyuki Fujisawa & Takeyuki Okuda. (2018) Effects of co-flow and equivalence ratio on flickering in partially premixed flame. International Journal of Heat and Mass Transfer 121, pages 1089-1098.
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Nobuyuki Fujisawa, Kazuki Sakai & Takayuki Yamagata. (2018) Observation of large-scale structure in flickering diffusion flame by time-resolved particle image velocimetry and shadowgraph imaging. Experimental Thermal and Fluid Science 92, pages 286-294.
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T.B.Y. Chen, A.C.Y. Yuen, G.H. Yeoh, V. Timchenko, S.C.P. Cheung, Q.N. Chan, W. Yang & H. Lu. (2018) Numerical study of fire spread using the level-set method with large eddy simulation incorporating detailed chemical kinetics gas-phase combustion model. Journal of Computational Science 24, pages 8-23.
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. 2018. Computational Fluid Dynamics. Computational Fluid Dynamics 451 465 .
N. Fujisawa, Y. Matsumoto & T. Yamagata. (2016) Influence of Co-flow on Flickering Diffusion Flame. Flow, Turbulence and Combustion 97:3, pages 931-950.
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A.C.Y. Yuen, G.H. Yeoh, V. Timchenko, S.C.P. Cheung & T.J. Barber. (2016) Importance of detailed chemical kinetics on combustion and soot modelling of ventilated and under-ventilated fires in compartment. International Journal of Heat and Mass Transfer 96, pages 171-188.
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Satyajeet Padhi, Babak Shotorban & Shankar Mahalingam. (2016) Computational investigation of flame characteristics of a non-propagating shrub fire. Fire Safety Journal 81, pages 64-73.
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A.C.Y. Yuen, G.H. Yeoh, R.K.K. Yuen, S.M. Lo & T. Chen. (2013) Development of Wall-Adapting Local Eddy Viscosity Model for Study of Fire Dynamics in a Large Compartment. Applied Mechanics and Materials 444-445, pages 1579-1591.
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Yuen A.C.Y.Yeoh G.H.Yuen R.K.K.Chen T.. (2013) Numerical Simulation of a Ceiling Jet Fire in a Large Compartment. Procedia Engineering 52, pages 3-12.
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G.E. Lau, E. Sanvicente, G.H. Yeoh, V. Timchenko, M. Fossa, C. Ménézo & S. Giroux-Julien. (2012) Modelling of natural convection in vertical and tilted photovoltaic applications. Energy and Buildings 55, pages 810-822.
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G.E. Lau, G.H. Yeoh, V. Timchenko & J.A. Reizes. (2012) Numerical investigation of passive cooling in open vertical channels. Applied Thermal Engineering 39, pages 121-131.
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G.E. Lau, G.H. Yeoh, V. Timchenko & J.A. Reizes. (2012) Large-eddy simulation of natural convection in an asymmetrically-heated vertical parallel-plate channel: Assessment of subgrid-scale models. Computers & Fluids 59, pages 101-116.
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G. H. Yeoh, S. C. P. Cheung, J. Y. Tu & T. J. Barber. (2011) Comparative Large Eddy Simulation study of a large-scale buoyant fire. Heat and Mass Transfer 47:9, pages 1197-1208.
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G.E. Lau, G.H. Yeoh, V. Timchenko & R.K.K. Yueen. (2011) Natural Convection in a PV-Integrated Double-Skin Façade using Large-Eddy Simulation. Procedia Engineering 14, pages 3277-3284.
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Marcelo J.S. de Lemos. (2010) Analysis of turbulent combustion in inert porous media. International Communications in Heat and Mass Transfer 37:4, pages 331-336.
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Sherman C.P. Cheung & G.H. Yeoh. (2009) A fully-coupled simulation of vortical structures in a large-scale buoyant pool fire. International Journal of Thermal Sciences 48:12, pages 2187-2202.
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M. Liu, S. M. Lo, B. Q. Hu & C. M. Zhao. (2009) On the use of fuzzy synthetic evaluation and optimal classification for computing fire risk ranking of buildings. Neural Computing and Applications 18:6, pages 643-652.
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. 2009. Computational Fluid Dynamics in Fire Engineering. Computational Fluid Dynamics in Fire Engineering 491 515 .
. 2008. Computational Fluid Dynamics. Computational Fluid Dynamics 437 452 .

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