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Kim Hyungdae

Kyung Hee University · Engineering

About the Lab

Professor Kim Hyungdae's research lab specializes in advanced heat transfer phenomena, particularly focusing on nucleate boiling and critical heat flux (CHF) enhancement in nanofluids and structured surfaces. The lab investigates the interplay between surface micro/nanotexturing, nanoparticle deposition, and interfacial phenomena to understand and optimize boiling heat transfer performance. Key research directions include the role of surface wettability, porosity, and roughness at the nanoscale, as well as the development of in-situ diagnostic techniques such as laser interferometry and infrared thermometry for real-time microlayer analysis. The lab also explores fundamental mechanisms behind boiling crisis mitigation using microstructured and nanoparticle-coated surfaces.

boiling heat transfercritical heat fluxnanofluidssurface modificationmicrolayer dynamics

Research Overview

Papers
121
Total Citations
3,316
Papers (5y)
35
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
35total
2021
2023
2024
2025
2026
Citations per year (5y)
190total
20212023202420252026

Selected Papers

15
1
Article|229 citations·2011
On the effect of surface roughness height, wettability, and nanoporosity on Leidenfrost phenomena
Hyungdae Kim, Bao Truong, Jacopo Buongiorno, Lin-Wen Hu
SJR Q1Applied Physics LettersOA

In recent quenching heat transfer studies of nanofluids, it was found that deposition of nanoparticles on a surface raises its Leidenfrost point (LFP) considerably [Kim et al., Int. J. Multiphase Flow 35, 427 (2009) and Kim et al., Int. J. Heat Mass Transfer 53, 1542 (2010)]. To probe the physical mechanism underlying this observation, the effects of surface properties on LFP of water droplets were studied, using custom-fabricated surfaces for which roughness height, wettability, and porosity we

Computational MechanicsEngineering
2
Article|228 citations·2006
Effect of nanoparticles on CHF enhancement in pool boiling of nano-fluids
Hyungdae Kim, Jeongbae Kim, Moo Hwan Kim
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
3
Article|223 citations·2014
An experimental method to simultaneously measure the dynamics and heat transfer associated with a single bubble during nucleate boiling on a horizontal surface
Satbyoul Jung, Hyungdae Kim
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
4
Article|196 citations·2009
On the quenching of steel and zircaloy spheres in water-based nanofluids with alumina, silica and diamond nanoparticles
Hyungdae Kim, G. DeWitt, Thomas McKrell, Jacopo Buongiorno, Lin-Wen Hu
SJR Q1International Journal of Multiphase Flow
Biomedical EngineeringEngineering
5
Article|152 citations·2007
Experimental study of the characteristics and mechanism of pool boiling CHF enhancement using nanofluids
Hyungdae Kim, Moo-Hwan Kim
SJR Q2Heat and Mass Transfer
Biomedical EngineeringEngineering
6
Article|136 citations·2009
Nanoparticle deposition effects on the minimum heat flux point and quench front speed during quenching in water-based alumina nanofluids
Hyungdae Kim, Jacopo Buongiorno, Lin-Wen Hu, Thomas McKrell
SJR Q1International Journal of Heat and Mass Transfer
Biomedical EngineeringEngineering
7
Article|114 citations·2018
EXPERIMENTAL STUDY ON CHF CHARACTERISTICS OF WATER-TIO2 NANO-FLUIDS
Hyungdae Kim, Jeongbae Kim, Moo Hwan Kim
Open Access System for Information Sharing (Pohang University of Science and Technology)

CHF characteristics of nano- fluids were investigated with different volumetric concentrations of nanoparticles. Pool boiling experiments indicated that the application of nano-fluids, instead of pure water, as a cooling liquid significantly increased the CHF. SEM (scanning electron microscope) observations subsequent to the pool boiling experiments revealed that nanoparticles were coated on the heating surface during pool boiling of nano-fluids. In order to investigate the roles of nanoparticle

Mechanical EngineeringEngineering
8
Review|104 citations·2011
Enhancement of critical heat flux in nucleate boiling of nanofluids: a state-of-art review
Hyungdae Kim
SJR Q1Nanoscale Research LettersOA

Nanofluids (suspensions of nanometer-sized particles in base fluids) have recently been shown to have nucleate boiling critical heat flux (CHF) far superior to that of the pure base fluid. Over the past decade, numerous experimental and analytical studies on the nucleate boiling CHF of nanofluids have been conducted. The purpose of this article is to provide an exhaustive review of these studies. The characteristics of CHF enhancement in nanofluids are systemically presented according to the eff

Biomedical EngineeringEngineering
9
Article|97 citations·2018
Hydrodynamic formation of a microlayer underneath a boiling bubble
Satbyoul Jung, Hyungdae Kim
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
10
Article|97 citations·2010
On the Mechanism of Pool Boiling Critical Heat Flux Enhancement in Nanofluids
Hyungdae Kim, Ho Seon Ahn, Moo Hwan Kim
Journal of Heat Transfer

The pool boiling characteristics of water-based nanofluids with alumina and titania nanoparticles of 0.01 vol % were investigated on a thermally heated disk heater at saturated temperature and atmospheric pressure. The results confirmed the findings of previous studies that nanofluids can significantly enhance the critical heat flux (CHF), resulting in a large increase in the wall superheat. It was found that some nanoparticles deposit on the heater surface during nucleate boiling, and the surfa

Mechanical EngineeringEngineering
11
Article|81 citations·2014
An Experimental Study on Heat Transfer Mechanisms in the Microlayer using Integrated Total Reflection, Laser Interferometry and Infrared Thermometry Technique
Satbyoul Jung, Hyungdae Kim
SJR Q2Heat Transfer Engineering

On a visible-transparent boiling surface, the detailed geometry of a microlayer can be detected using a total reflection technique combined with laser interferometry. On an infrared-opaque boiling surface, the surface temperature and heat flux distribution can be obtained using a high-speed infrared thermometry technique. In the present study, an experimental technique to study heat transfer in the microlayer is described that permits the simultaneous use of the total reflection combined with la

Mechanical EngineeringEngineering
12
Article|67 citations·2010
Detection of liquid–vapor–solid triple contact line in two-phase heat transfer phenomena using high-speed infrared thermometry
Hyungdae Kim, Jacopo Buongiorno
SJR Q1International Journal of Multiphase FlowOA
Mechanical EngineeringEngineering
13
Article|56 citations·2016
Simultaneous observation of dynamics and thermal evolution of irreversible dry spot at critical heat flux in pool boiling
Dong Eok Kim, Junkyu Song, Hyungdae Kim
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
14
Article|49 citations·2013
Measurement of wetted area fraction in subcooled pool boiling of water using infrared thermography
Hyungdae Kim, Youngjae Park, Jacopo Buongiorno
SJR Q1Nuclear Engineering and DesignOA
Mechanical EngineeringEngineering
15
Article|44 citations·2021
Effects of surface wettability on pool boiling process: Dynamic and thermal behaviors of dry spots and relevant critical heat flux triggering mechanism
Hyungdae Kim, Dong Eok Kim
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering

Research Areas

Mechanical EngineeringBiomedical EngineeringComputational MechanicsAerospace EngineeringMaterials ChemistrySurfaces, Coatings and Films

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