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Evatt R. Hawkes
Evatt R. Hawkes
Professor of Mechanical Engineering, The University of New South Wales
Verified email at unsw.edu.au - Homepage
Title
Cited by
Cited by
Year
Terascale direct numerical simulations of turbulent combustion using S3D
JH Chen, A Choudhary, B De Supinski, M DeVries, ER Hawkes, S Klasky, ...
Computational Science & Discovery 2 (1), 015001, 2009
7142009
Structure of a spatially developing turbulent lean methane–air Bunsen flame
R Sankaran, ER Hawkes, JH Chen, T Lu, CK Law
Proceedings of the combustion institute 31 (1), 1291-1298, 2007
5212007
Direct numerical simulation of hydrogen-enriched lean premixed methane–air flames
ER Hawkes, JH Chen
Combustion and Flame 138 (3), 242-258, 2004
3822004
Scalar mixing in direct numerical simulations of temporally evolving plane jet flames with skeletal CO/H2 kinetics
ER Hawkes, R Sankaran, JC Sutherland, JH Chen
Proceedings of the combustion institute 31 (1), 1633-1640, 2007
3112007
A flame surface density approach to large-eddy simulation of premixed turbulent combustion
ER Hawkes, RS Cant
Proceedings of the Combustion Institute 28 (1), 51-58, 2000
2982000
Direct numerical simulation of ignition front propagation in a constant volume with temperature inhomogeneities: I. Fundamental analysis and diagnostics
JH Chen, ER Hawkes, R Sankaran, SD Mason, HG Im
Combustion and flame 145 (1-2), 128-144, 2006
2972006
Turbulent flame–wall interaction: a direct numerical simulation study
A Gruber, R Sankaran, ER Hawkes, JH Chen
Journal of Fluid Mechanics 658, 5-32, 2010
2742010
The effects of non-uniform temperature distribution on the ignition of a lean homogeneous hydrogen–air mixture
R Sankaran, HG Im, ER Hawkes, JH Chen
Proceedings of the Combustion Institute 30 (1), 875-882, 2005
2342005
Implications of a flame surface density approach to large eddy simulation of premixed turbulent combustion
ER Hawkes, RS Cant
Combustion and Flame 126 (3), 1617-1629, 2001
2342001
A petascale direct numerical simulation study of the modelling of flame wrinkling for large-eddy simulations in intense turbulence
ER Hawkes, O Chatakonda, H Kolla, AR Kerstein, JH Chen
Combustion and flame 159 (8), 2690-2703, 2012
2102012
Direct numerical simulation of ignition front propagation in a constant volume with temperature inhomogeneities: II. Parametric study
ER Hawkes, R Sankaran, PP Pébay, JH Chen
Combustion and Flame 145 (1-2), 145-159, 2006
1722006
Modelling n-dodecane spray and combustion with the transported probability density function method
Y Pei, ER Hawkes, S Kook, GM Goldin, T Lu
Combustion and Flame 162 (5), 2006-2019, 2015
1692015
Comparison of direct numerical simulation of lean premixed methane–air flames with strained laminar flame calculations
ER Hawkes, JH Chen
Combustion and Flame 144 (1-2), 112-125, 2006
1642006
Premixed flames subjected to extreme turbulence: Some questions and recent answers
JF Driscoll, JH Chen, AW Skiba, CD Carter, ER Hawkes, H Wang
Progress in Energy and Combustion Science 76, 100802, 2020
1612020
Feasibility of nanofluid-based optical filters
RA Taylor, TP Otanicar, Y Herukerrupu, F Bremond, G Rosengarten, ...
Applied optics 52 (7), 1413-1422, 2013
1612013
Direct numerical simulation of turbulent combustion: fundamental insights towards predictive models
ER Hawkes, R Sankaran, JC Sutherland, JH Chen
Journal of Physics: Conference Series 16 (1), 65, 2005
1612005
Spectral splitting strategy and optical model for the development of a concentrating hybrid PV/T collector
F Crisostomo, RA Taylor, D Surjadi, A Mojiri, G Rosengarten, ER Hawkes
Applied Energy 141, 238-246, 2015
1532015
Ethanol utilisation in a diesel engine using dual-fuelling technology
S Padala, C Woo, S Kook, ER Hawkes
Fuel 109, 597-607, 2013
1532013
Direct numerical simulations of a high Karlovitz number laboratory premixed jet flame–an analysis of flame stretch and flame thickening
H Wang, ER Hawkes, JH Chen, B Zhou, Z Li, M Aldén
Journal of Fluid Mechanics 815, 511-536, 2017
1442017
The structure and propagation of laminar flames under autoignitive conditions
A Krisman, ER Hawkes, JH Chen
Combustion and Flame 188, 399-411, 2018
1232018
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