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Jiun Cai Ong
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Year
Evaluation of a Lagrangian Soot Tracking Method for the prediction of primary soot particle size under engine-like conditions
JC Ong, KM Pang, JH Walther, JH Ho, HK Ng
Journal of Aerosol Science 115, 70-95, 2018
242018
Large-eddy simulation of n-dodecane spray flame: Effects of nozzle diameters on autoignition at varying ambient temperatures
JC Ong, KM Pang, XS Bai, M Jangi, JH Walther
Proceedings of the Combustion Institute 38 (2), 3427-3434, 2021
232021
An investigation on early evolution of soot in n-dodecane spray combustion using large eddy simulation
M Zhang, JC Ong, KM Pang, XS Bai, JH Walther
Fuel 293, 120072, 2021
212021
A numerical study of the influence of pilot fuel injection timing on combustion and emission formation under two-stroke dual-fuel marine engine-like conditions
A Nemati, JC Ong, KM Pang, S Mayer, JH Walther
Fuel 312, 122651, 2022
202022
Effects of ambient pressure and nozzle diameter on ignition characteristics in diesel spray combustion
JC Ong, JH Walther, S Xu, S Zhong, XS Bai, KM Pang
Fuel 290, 119887, 2021
122021
Prediction method for ignition delay time of liquid spray combustion in constant volume chamber
JC Ong, KM Pang, JH Walther
Fuel 287, 119539, 2021
112021
Large eddy simulation of soot formation in a ducted fuel injection configuration
JC Ong, M Zhang, MS Jensen, JH Walther
Fuel 313, 122735, 2022
102022
Numerical study of the scavenging process in a large two-stroke marine engine using URANS and LES turbulence models
A Nemati, JC Ong, MV Jensen, KM Pang, S Mayer, JH Walther
SAE Technical Paper, 2020
92020
Large eddy simulation of soot formation and oxidation for different ambient temperatures and oxygen levels
M Zhang, JC Ong, KM Pang, XS Bai, JH Walther
Applied Energy 306, 118094, 2022
72022
CFD analysis of combustion and emission formation using URANS and LES under large two-stroke marine engine-like conditions
A Nemati, JC Ong, JH Walther
Applied Thermal Engineering 216, 119037, 2022
62022
Development of Lagrangian soot tracking method for the study of soot morphology in diesel spray combustion
JC Ong
University of Nottingham, 2017
62017
Large eddy simulation of n-dodecane spray flame: Effects of injection pressure on spray combustion characteristics at low ambient temperature
JC Ong, Y Zhang, S Xu, JH Walther, XS Bai, KM Pang
Proceedings of the Combustion Institute 39 (2), 2631-2642, 2023
32023
Large eddy simulation of transient combustion and soot recession in the ECN Spray A and D flames
M Zhang, JC Ong, KM Pang, XS Bai, JH Walther
Fuel 329, 125384, 2022
32022
Effects of ambient CO2 and H2O on soot processes in n-dodecane spray combustion using large eddy simulation
M Zhang, JC Ong, KM Pang, XS Bai, JH Walther
Fuel 312, 122700, 2022
22022
Numerical Study of the Influence of Turbulence–Chemistry Interaction on URANS Simulations of Diesel Spray Flame Structures under Marine Engine-like Conditions
JC Ong, KM Pang, M Jangi, XS Bai, JH Walther
Energy & Fuels 35 (14), 11457-11467, 2021
22021
Numerical simulation of a premixed dual-fuel combustion in a constant volume combustion chamber
AK Kilic, S Köysüren, JC Ong, A Nemati, JH Walther
15th International Conference on Heat Transfer, Fluid Mechanics and …, 2021
22021
Numerical Investigation of the Effect of Conjugate Heat Transfer on Sulfuric Acid Condensation in a Large Two-Stroke Marine Diesel Engine
MV Jensen, N Karvounis, KM Pang, JC Ong, J Schramm, JH Walther
14th International Conference on Heat Transfer, Fluid Mechanics and …, 2019
22019
Effects of Ambient Oxygen and Density on Primary Soot Size under Diesel-Like Conditions Using a Lagrangian Soot Tracking Model
JC Ong, KM Pang, JH Walther, JH Ho, HK Ng
SAE International Journal of Engines 14 (2), 301-316, 2021
12021
Evaluation of Reduced n-Heptane Mechanisms in Dual-Fuel Combustion
JC Ong, JH Walther, XS Bai, KM Pang
International Conference on Applied Energy 2020, 2020
12020
Large eddy simulation of combustion recession: Effects of ambient temperature and injection pressure
M Zhang, JC Ong, KM Pang, S Xu, Y Zhang, A Nemati, XS Bai, JH Walther
Fuel 351, 128831, 2023
2023
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