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Renlin Zhang
Renlin Zhang
Post-doc Research Associate, University of New South Wales
Verified email at unsw.edu.au
Title
Cited by
Cited by
Year
Structural evolution of soot particles during diesel combustion in a single-cylinder light-duty engine
R Zhang, S Kook
Combustion and Flame 162 (6), 2720-2728, 2015
682015
Influence of fuel injection timing and pressure on in-flame soot particles in an automotive-size diesel engine
R Zhang, S Kook
Environmental science & technology 48 (14), 8243-8250, 2014
662014
Automated detection of primary particles from transmission electron microscope (TEM) images of soot aggregates in diesel engine environments
S Kook, R Zhang, QN Chan, T Aizawa, K Kondo, LM Pickett, E Cenker, ...
SAE International Journal of Engines 9 (1), 279-296, 2016
612016
In-flame soot sampling and particle analysis in a diesel engine
S Kook, R Zhang, K Szeto, LM Pickett, T Aizawa
SAE International Journal of Fuels and Lubricants 6 (1), 80-97, 2013
572013
The development of hydroxyl and soot in a methyl decanoate-fuelled automotive-size optical diesel engine
MK Le, R Zhang, L Rao, S Kook, ER Hawkes
Fuel 166, 320-332, 2016
532016
The influence of a large methyl ester on in-flame soot particle structures in a small-bore diesel engine
Y Zhang, R Zhang, L Rao, D Kim, S Kook
Fuel 194, 423-435, 2017
522017
The soot particle formation process inside the piston bowl of a small-bore diesel engine
Y Zhang, D Kim, L Rao, R Zhang, S Kook, KS Kim, CB Kweon
Combustion and Flame 185, 278-291, 2017
432017
Nanostructure analysis of in-flame soot particles under the influence of jet-jet interactions in a light-duty diesel engine
YL Zhang, R Zhang, S Kook
SAE International Journal of Engines 8 (5), 2213-2226, 2015
422015
Automated determination of size and morphology information from soot transmission electron microscope (TEM)-generated images
C Wang, QN Chan, R Zhang, S Kook, ER Hawkes, GH Yeoh, PR Medwell
Journal of Nanoparticle Research 18, 1-15, 2016
402016
Influence of biodiesel carbon chain length on in-cylinder soot processes in a small bore optical diesel engine
R Zhang, PX Pham, S Kook, AR Masri
Fuel 235, 1184-1194, 2019
382019
Effect of jet–jet interactions on soot formation in a small-bore diesel engine
MK Le, Y Zhang, R Zhang, L Rao, S Kook, QN Chan, ER Hawkes
Proceedings of the Combustion Institute 36 (3), 3559-3566, 2017
342017
Morphological variations of in-flame and exhaust soot particles associated with jet-to-jet variations and jet–jet interactions in a light-duty diesel engine
R Zhang, Y Zhang, S Kook
Combustion and Flame 176, 377-390, 2017
282017
Size distribution and structure of wall-deposited soot particles in an automotive-size diesel engine
R Zhang, K Szeto, S Kook
SAE International Journal of Fuels and Lubricants 6 (3), 605-614, 2013
242013
A comparison between in-flame and exhaust soot nanostructures in a light-duty diesel engine
Y Zhang, R Zhang, L Rao, S Kook
SAE Technical Paper, 2017
162017
High-speed imaging of soot luminosity and spectral analysis of in-cylinder pressure trace during diesel knock
A Rusly, S Kook, E Hawkes, R Zhang
SAE Technical Paper, 2014
132014
Diesel knock visualization in a small-bore optical engine
AM Rusly, R Zhang, S Kook, ER Hawkes
Australia Combustion Symposium, 2011
102011
Effect of pilot injection on diesel knock in a small-bore optical engine
AM Rusly, S Kook, ER Hawkes, R Zhang
Internal Combustion Engine Division Spring Technical Conference 44663, 225-237, 2012
82012
Influence of carbon chain length on biodiesel combustion in an optically accessible diesel engine
R Zhang, PX Pham, S Kook, AR Masri
20th Australian fluid mechanics conference, 2016
42016
Overcoming beam attenuation issues in OH-PLIF diagnostics using an aromatics-free, low-sooting surrogate fuel in an optical diesel engine
HC Su, R Zhang, L Rao, S Kook, ER Hawkes, QN Chan
Australasian Fluid Mechanics Conference 2016, 2016
32016
Comparison between in-flame and exhaust soot particles in a single-cylinder, light-duty diesel engine
R Zhang, Y Zhang, S Kook
19 th Australasian Fluid Mechanics Conference 1, 212-215, 2014
32014
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