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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 69, 2016 - Issue 11
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Original Articles

Study of three LES subgrid-scale turbulence models for predictions of heat and mass transfer in large-scale compartment fires

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Pages 1223-1241 | Received 03 Sep 2015, Accepted 24 Nov 2015, Published online: 02 May 2016

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L. Ma, F. Nmira & J. L. Consalvi. (2019) Verification and validation of a variable–density solver for fire safety applications. Numerical Heat Transfer, Part B: Fundamentals 76:3, pages 107-129.
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Cheng Wang, Anthony Chun Yin Yuen, Qing Nian Chan, Timothy Bo Yuan Chen, Wei Yang, Sherman Chi Pok Cheung & Guan Heng Yeoh. (2020) Characterisation of soot particle size distribution through population balance approach and soot diagnostic techniques for a buoyant non-premixed flame. Journal of the Energy Institute 93:1, pages 112-128.
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Anthony Chun Yin Yuen, Timothy Bo Yuan Chen, Guan Heng Yeoh, Wei Yang, Sherman Chi-Pok Cheung, Morgan Cook, Bin Yu, Qing Nian Chan & Ho Lung Yip. (2018) Establishing pyrolysis kinetics for the modelling of the flammability and burning characteristics of solid combustible materials. Journal of Fire Sciences 36:6, pages 494-517.
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T.B.Y. Chen, A.C.Y. Yuen, C. Wang, G.H. Yeoh, V. Timchenko, S.C.P. Cheung, Q.N. Chan & W. Yang. (2018) Predicting the fire spread rate of a sloped pine needle board utilizing pyrolysis modelling with detailed gas-phase combustion. International Journal of Heat and Mass Transfer 125, pages 310-322.
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A.C.Y. Yuen, G.H. Yeoh, V. Timchenko, T.B.Y. Chen, Q.N. Chan, C. Wang & D.D. Li. (2017) Comparison of detailed soot formation models for sooty and non-sooty flames in an under-ventilated ISO room. International Journal of Heat and Mass Transfer 115, pages 717-729.
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