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Chung K. Law
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Cited by
Cited by
Year
Combustion physics
CK Law
Cambridge university press, 2010
35322010
A directed relation graph method for mechanism reduction
T Lu, CK Law
Proceedings of the Combustion Institute 30 (1), 1333-1341, 2005
13352005
Recent advances in droplet vaporization and combustion
CK Law
Progress in energy and combustion science 8 (3), 171-201, 1982
12451982
Hierarchical and comparative kinetic modeling of laminar flame speeds of hydrocarbon and oxygenated fuels
E Ranzi, A Frassoldati, R Grana, A Cuoci, T Faravelli, AP Kelley, CK Law
Progress in Energy and Combustion Science 38 (4), 468-501, 2012
12122012
Regimes of coalescence and separation in droplet collision
J Qian, CK Law
Journal of fluid mechanics 331, 59-80, 1997
10151997
Toward accommodating realistic fuel chemistry in large-scale computations
T Lu, CK Law
Progress in Energy and Combustion Science 35 (2), 192-215, 2009
9942009
Erosive burning mechanism of double-base propellants
A Ishihara, N Kubota
Symposium (International) on Combustion 21 (1), 1975-1981, 1988
826*1988
Laminar flame speeds of hydrocarbon+ air mixtures with hydrogen addition
G Yu, CK Law, CK Wu
Combustion and flame 63 (3), 339-347, 1986
7901986
Structure, aerodynamics, and geometry of premixed flamelets
CK Law, CJ Sung
Progress in energy and combustion science 26 (4-6), 459-505, 2000
7642000
Dynamics of stretched flames
CK Law
Symposium (international) on combustion 22 (1), 1381-1402, 1989
6591989
Nonlinear effects in the extraction of laminar flame speeds from expanding spherical flames
AP Kelley, CK Law
Combustion and Flame 156 (9), 1844-1851, 2009
6332009
High-temperature combustion reaction model of H2
H Wang, X You, AV Joshi, SG Davis, A Laskin, F Egolfopoulos, CK Law, ...
High-temperature Combustion Reaction Model of H 2, 2007
6142007
Advances and challenges in laminar flame experiments and implications for combustion chemistry
FN Egolfopoulos, N Hansen, Y Ju, K Kohse-Höinghaus, CK Law, F Qi
Progress in Energy and Combustion Science 43, 36-67, 2014
6122014
Determination of and Fuel Structure Effects on Laminar Flame Speeds of C1 to C8 Hydrocarbons
SG Davis, CK Law
Combustion Science and Technology 140 (1-6), 427-449, 1998
5521998
Further considerations on the determination of laminar flame speeds with the counterflow twin-flame technique
CM Vagelopoulos, FN Egolfopoulos, CK Law
Symposium (international) on combustion 25 (1), 1341-1347, 1994
5351994
An experimental investigation on the collision behaviour of hydrocarbon droplets
YJ Jiang, A Umemura, CK Law
Journal of Fluid Mechanics 234, 171-190, 1992
5301992
On the determination of laminar flame speeds from stretched flames
CK Wu, CK Law
Symposium (International) on Combustion 20 (1), 1941-1949, 1985
5301985
Morphology and burning rates of expanding spherical flames in H2/O2/inert mixtures up to 60 atmospheres
SD Tse, DL Zhu, CK Law
Proceedings of the combustion institute 28 (2), 1793-1800, 2000
5282000
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
5232007
Outward propagation, burning velocities, and chemical effects of methane flames up to 60 atm
G Rozenchan, DL Zhu, CK Law, SD Tse
Proceedings of the combustion institute 29 (2), 1461-1470, 2002
5112002
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