Follow
Wanjun Dang
Wanjun Dang
Postdoctoral Researcher, Mechanical Engineering
Verified email at lsu.edu
Title
Cited by
Cited by
Year
A small-volume, high-throughput approach for surface tension and viscosity measurements of liquid fuels
W Dang, W Zhao, I Schoegl, S Menon
Measurement Science and Technology 31 (9), 095301, 2020
102020
Temperature effects on droplet oscillation decay with application to fuel property measurement
W Dang, M Gurunadhan, I Schoegl, S Menon
Atomization and Sprays 31 (10), 2021
52021
Determination of heat of vaporization and vapor pressure by micro-liter fuel droplet vaporization
W Dang, SK Menon
AIAA Propulsion and Energy 2020 Forum, 3886, 2020
12020
Small-volume, High-throughput Techniques for Fuel Physical Property Measurements
W Dang, SK Menon
AIAA Propulsion and Energy 2019 Forum, 4447, 2019
12019
Evaporation of single droplets of multicomponent liquid fuel blends at elevated temperatures
W Dang, W Zhao, S Menon
ICLASS 2018: 14th International conference on liquid atomization & spray systems, 2018
12018
In-line, High-throughput Quality Monitoring for Fuel Cell and Electrolyzer Components based on Transmission and Reflection Imaging
W Dang, P Rupnowski
National Renewable Energy Laboratory (NREL), Golden, CO (United States), 2024
2024
Droplet Evaporation-Based Approach for Microliter Fuel Property Measurements
W Dang, M Gurunadhan, W Ard, I Schoegl, S Menon
International Journal of Thermophysics 43 (4), 58, 2022
2022
Droplet-Based Fuel Property Measurements
W Dang
LSU DOCTORAL DISSERTATIONS, 2021
2021
Physical property measurement of primary reference fuels and blends using a droplet generator and high-speed imaging
W Dang, S Menon
Bulletin of the American Physical Society 63, 2018
2018
The system can't perform the operation now. Try again later.
Articles 1–9