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Myoungsoo Kim
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年份
Greenhouse gas emissions of conventional and alternative vehicles: Predictions based on energy policy analysis in South Korea
W Choi, E Yoo, E Seol, M Kim, HH Song
Applied Energy 265, 114754, 2020
892020
Well-to-wheel analysis of hydrogen fuel-cell electric vehicle in Korea
E Yoo, M Kim, HH Song
International Journal of Hydrogen Energy 43 (41), 19267-19278, 2018
882018
Well-to-wheel nitrogen oxide emissions from internal combustion engine vehicles and alternative fuel vehicles reflect real driving emissions and various fuel production …
E Seol, E Yoo, C Lee, M Kim, M Cho, W Choi, HH Song
Journal of Cleaner Production 342, 130983, 2022
142022
Development of quasi-dimensional turbulence model for spark-ignition engine with physical analysis of tumble: Energy-based tumble model focusing on energy intake and turbulence …
M Kim, Y Kim, J Kim, HH Song
Applied Energy 252, 113455, 2019
142019
Predicting the influences of intake port geometry on the tumble generation and turbulence characteristics by zero-dimensional spark ignition engine model
Y Kim, M Kim, J Kim, HH Song, Y Park, D Han
SAE Technical Paper, 2018
102018
Well-to-Wheel greenhouse gas emissions analysis of hydrogen fuel cell vehicle-Hydrogen produced by naphtha cracking
M Kim, E Yoo, HH Song
Transactions of the Korean Society of Automotive Engineers 25 (2), 157-166, 2017
92017
A new physics-based modeling approach for a 0D turbulence model to reflect the intake port and chamber geometries and the corresponding flow structures in high-tumble spark …
Y Kim, M Kim, S Oh, W Shin, S Cho, HH Song
Energies 12 (10), 1898, 2019
82019
An experimental study on a six-stroke gasoline homogeneous charge compression ignition (HCCI) engine with continuously variable valve duration (CVVD)
W Shin, M Kim, S Oh, CH Lee, H Hwang, HH Song, HW Kim, BS Kim, ...
SAE Technical Paper, 2021
52021
The study of the fundamental characteristics of tumble in a spark-ignition engine via numerical analysis
M Kim, HH Song
SAE Technical Paper, 2021
32021
Analyzing the Effect of Engine Design Modification on the Spark-Ignition Engine Performance via Simplified Quasi-Dimensional Modeling
Y Kim, M Kim, HH Song
Internal Combustion Engine Division Fall Technical Conference 58325, V002T07A004, 2017
22017
Experimental study on the spark ignition characteristics at elevated temperature and pressure under flow conditions
M Kim, C Lee, S Seo, JH Shin, K Sim, J Lee, HH Song
Combustion and Flame 259, 113159, 2024
12024
A universally applicable 0D turbulence model based on the physical analysis of fundamental tumble behaviors in spark-ignition engines
M Kim, HH Song
International Journal of Engine Research 24 (5), 2051-2071, 2023
12023
Development of a Comprehensive 0D Model for an SI Engine Based on the Analysis of the Kinetic Energy of Tumble and the Critical Factors for Flame Wrinkling
김명수
서울대학교 대학원, 2022
12022
A universally applicable 0D combustion model with a novel analysis of the critical factors affecting combustion in spark-ignition engines
M Kim, HH Song
International Journal of Engine Research 24 (8), 3734-3765, 2023
2023
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