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Seunghyun Lee
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Experimental and computational investigation on two-phase flow and heat transfer of highly subcooled flow boiling in vertical upflow
J Lee, LE O'Neill, S Lee, I Mudawar
International Journal of Heat and Mass Transfer 136, 1199-1216, 2019
662019
Investigation of flow boiling in large micro-channel heat exchangers in a refrigeration loop for space applications
S Lee, I Mudawar
International Journal of Heat and Mass Transfer 97, 110-129, 2016
632016
Thermal analysis of hybrid single-phase, two-phase and heat pump thermal control system (TCS) for future spacecraft
SH Lee, I Mudawar, MM Hasan
Applied Thermal Engineering 100, 190-214, 2016
582016
Investigation of subcooled and saturated boiling heat transfer mechanisms, instabilities, and transient flow regime maps for large length-to-diameter ratio micro-channel heat sinks
S Lee, VS Devahdhanush, I Mudawar
International Journal of Heat and Mass Transfer 123, 172-191, 2018
572018
Frequency analysis of pressure oscillations in large length-to-diameter two-phase micro-channel heat sinks
S Lee, VS Devahdhanush, I Mudawar
International Journal of Heat and Mass Transfer 116, 273-291, 2018
402018
Transient characteristics of flow boiling in large micro-channel heat exchangers
S Lee, I Mudawar
International Journal of Heat and Mass Transfer 103, 186-202, 2016
352016
Experimental investigation of subcooled flow boiling in annuli with reference to thermal management of ultra-fast electric vehicle charging cables
VS Devahdhanush, S Lee, I Mudawar
International Journal of Heat and Mass Transfer 172, 121176, 2021
282021
2D computational investigation into transport phenomena of subcooled and saturated flow boiling in large length to diameter ratio micro-channel heat sinks
I Yeo, S Lee
International Journal of Heat and Mass Transfer 183, 122128, 2022
272022
Experimental and analytical investigation of flow loop induced instabilities in micro-channel heat sinks
S Lee, VS Devahdhanush, I Mudawar
International Journal of Heat and Mass Transfer 140, 303-330, 2019
252019
Enhanced model for annular flow in micro-channel heat sinks, including effects of droplet entrainment/deposition and core turbulence
S Lee, I Mudawar
International Journal of Heat and Mass Transfer 133, 510-530, 2019
202019
Pressure drop characteristics of large length-to-diameter two-phase micro-channel heat sinks
S Lee, VS Devahdhanush, I Mudawar
International Journal of Heat and Mass Transfer 115, 1258-1275, 2017
202017
Thermal and thermodynamic performance, and pressure oscillations of refrigeration loop employing large micro-channel evaporators
S Lee, I Mudawar
International Journal of Heat and Mass Transfer 103, 1313-1326, 2016
192016
Consolidated theoretical/empirical predictive method for subcooled flow boiling in annuli with reference to thermal management of ultra-fast electric vehicle charging cables
VS Devahdhanush, S Lee, I Mudawar
International Journal of Heat and Mass Transfer 175, 121224, 2021
172021
High Precision Scribing of Thin Film Solar Cells by a Picosecond Laser
YC Shin, GJ Cheng, W Hu, MY Zhang, S Lee
Proceedings of NSF Engineering Research and Innovation Conference, 2011
42011
Analysis of globular transfer considering momentum induced by flow within molten drop in GMAW
N Arif, SH Lee, MJ Kang, CD Yoo
Journal of Welding and Joining 26 (4), 61-65, 2008
42008
Mechanistic model to predict oscillating frequency of flow boiling in large length to diameter ratio micro-channel heat sinks
H Jung, S Lee
International Journal of Heat and Mass Transfer 215, 124473, 2023
2023
이상유동 마이크로 히트싱크의 동적 거동 불안정성에 대한 연구
이승현
유체기계 연구개발 발표회 논문집, 224-232, 2019
2019
Thermal Analysis of Hybrid Thermal Control System and Experimental Investigation of Flow Boiling in Micro-channel Heat Exchangers
S Lee
Purdue University, 2017
2017
Adaptable Single Active Loop Thermal Control System (TCS) for Future Space Missions
I Mudawar, S Lee, M Hasan
Annual meeting of the American Society for Gravitational and Space Research …, 2015
2015
용적 내부의 유동에 의한 모멘텀을 고려한 GMA 용접의 입상용적 이행에 대한 해석
이승현, 강문진, 유중돈
대한용접· 접합학회지 26 (4), 61-65, 2008
2008
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