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TWO-PHASE FLOW AND THERMAL MANAGEMENT LABORATORY

Publications

Overview

"본 연구실에서는 열전달 분야 최상위 저널에 논문을 투고하고 있습니다."

정량적인 지표는 아래를 참고바랍니다.

2024

  • [교신] 머신러닝기반예측모델, International Journal of Heat and Mass Transfer, Utilization of XGBoost algorithm to predict dryout incipience quality for saturated flow boiling in mini/micro-channels, 231 (2024) 125827, JCR Mechanics 상위 9.7%

2023

  • [교신] 유동불안정성모델, International Journal of Heat and Mass Transfer, Mechanistic model to predict osciilating frequency of flow boiling in large length to diameter ratio micro-channel heat sinks, 215 (2023) 124473, JCR Mechanics 상위 12%

2022

  • [교신] 마이크로채널 유동비등 CFD, International Journal of Heat and Mass Transfer, 2D computational investigation into transport phenomena of subcooled and saturated flow boiling in large length to diameter ratio micro-channel heat sinks, 183 (2022) 122128, JCR Mechanics 상위 10.51%

2021

  • [공동] 환형관내 유동비등 특성예측, International Journal of Heat and Mass Transfer, Consolidated theoretical/empirical predictive method for subcooled flow boiling in annuli with reference to thermal management of ultra-fast electric vehicle charging cables, 175 (2021) 121224, JCR Mechanics 상위 6.3%
  • [공동] 전기차케이블냉각, International Journal of Heat and Mass Transfer, Experiment investigation of subcooled flow boiling in annuli with reference to thermal management of ultra-fast electric vehicle charging cables, 172 (2021) 121176, JCR Mechanics 상위 6.3%

2019

  • [제1저자] 이상유동루프불안정성, International Journal of Heat and Mass Transfer, Experimental and analytical investigation of flow loop induced instabilities in micro-channel heat sinks, 140 (2019) 303-330, JCR Mechanics 상위 5.6%
  • [제1저자] 환형류이론모델링, International Journal of Heat and Mass Transfer, Enhanced model for annular flow in micro-channel heat sinks, including effects of droplet entrainment/deposition and core turbulence, 133 (2019) 510-530, JCR Mechanics 상위 5.6%

2018

  • [제1저자] 마이크로채널유동비등, International Journal of Heat and Mass Transfer, 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, 123 (2018) 172-191, JCR Mechanics 상위 6.34%
  • [제1저자] DWO 주파수관련, International Journal of Heat and Mass Transfer, Frequency analysis of pressure oscillations in large length-to-diameter two-phase micro-channel heat sinks, 183 (2018) 273-291, JCR Mechanics 상위 6.34%

2017

  • [제1저자] 압력강하관련, International Journal of Heat and Mass Transfer, Pressure drop characteristics of large length-to-diameter two-phase micro-channel heat sinks, 115 (2017) 1258-1275, JCR Mechanics 상위 6.39%

2016

  • [제1저자] 루프불안정성, International Journal of Heat and Mass Transfer, Thermal and thermodynamic performance, and pressure oscillations of refrigeration loop employing large micro-channel evaporators, 103 (2016) 1313-1326, JCR Mechanics 상위 7.04%
  • [제1저자] 과도응답특성, International Journal of Heat and Mass Transfer, Transient characteristics of flow boiling in large micro-channel heat exchangers, 103 (2016) 186-202, JCR Mechanics 상위 7.04%
  • [제1저자] 유동비등특성, International Journal of Heat and Mass Transfer, Investigation of flow boiling in large micro-channel heat exchangers in a refrigeration loop for space applications, 97 (2016) 110-129, JCR Mechanics 상위 7.04%
  • [제1저자] 나사ORION열시스템해석, Applied Thermal Enginnering, Thermal analysis of hybrid single-phase, two-phase and heat pump thermal control system(TCS) for future spacecraft, 100 (2016) 190-214, JCR Mechanics 상위 7.04
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