Kwang J. Kim

Active Materials and Smart Living Laboratory

Thermal Engineering

Surface wettability effect on nucleate pool boiling heat transfer with titanium oxide (TiO2) coated heating surface

Surface wettability effect on nucleate pool boiling heat transfer with titanium oxide (TiO2) coated heating surface
K. Yim, J. Lee, B. Naccarato, and K. J. Kim. International Journal of Heat and Mass Transfer 133, 352-358 (2019) [PDF] [DOI]

Internal dropwise condensation: Modeling and experimental framework for horizontal tube condensers

Internal dropwise condensation: Modeling and experimental framework for horizontal tube condensers
K. Cheng, S. Kim, S. Lee, and K. J. Kim. International Journal of Heat and Mass Transfer 83,99–108 (2015) [PDF] [DOI]

Influence of heated surfaces and fluids on pool boiling heat transfer

Influence of heated surfaces and fluids on pool boiling heat transfer
C. Y. Lee, B. J. Zhang, K. J. Kim. Experimental Thermal and Fluid Science 59,15-23 (2014) [PDF] [DOI]

Noncovalently assembled nanotubular porous layers for failure delay of heating surface

Noncovalently assembled nanotubular porous layers for failure delay of heating surface
B. J. Zhang, T. Hwang, J.-D. Nam, J. Suhr, and K. J. Kim. Scientific Reports 4, 6817 (2014) [PDF] [DOI] [PubMed]

 Heat Trasfer Measurement during Dropwise Condensation using Micro/Nano-Scale Porous Surface

 Heat Trasfer Measurement during Dropwise Condensation using Micro/Nano-Scale Porous Surface
S. Lee, K. Cheng, V. Palmre, MD M. H. Bhuiya, K. J. Kim, B. J. Zhang, and H. Yoon. International Journal of Heat and Mass Transfer 65, 619-626 (2013) [PDF] [DOI]

Augmented Boiling Heat Transfer on the Wetting-modified Three Dimensionally-Interconnected Alumina Nano Porous Surfaces in Aqueous Polymeric Surfactants

Augmented Boiling Heat Transfer on the Wetting-modified Three Dimensionally-Interconnected Alumina Nano Porous Surfaces in Aqueous Polymeric Surfactants
B. J. Zhang, J. Park, and K. J. Kim. International Journal of Heat and Mass Transfer 63, 224-232 (2013) [PDF] [DOI]

A Dropwise Condensation Model Using a Nano-scale, Pin Structured Surface

A Dropwise Condensation Model Using a Nano-scale, Pin Structured Surface
S. Lee, H. K. Yoon, K. J. Kim, S. Kim, M. Kennedy, and B. J. Zhang. International Journal of Heat and Mass Transfer 60, 664–671 (2013) [PDF] [DOI]

Enhanced Heat Transfer Performance of Alumina Sponge-like Nano-Porous Structures through Surface Wettability Control in Nucleate Pool Boiling

Enhanced Heat Transfer Performance of Alumina Sponge-like Nano-Porous Structures through Surface Wettability Control in Nucleate Pool Boiling
 B. J. Zhang, K. J. Kim, and H. Yoon. International Journal of Heat and Mass Transfer 55(25-26), 7487-7498 (2012) [PDF] [DOI]

Effect of Liquid Uptake on Critical Heat Flux Utilizing a Three dimensional, Interconnected Alumina Nano Porous Surfaces

Effect of Liquid Uptake on Critical Heat Flux Utilizing a Three dimensional, Interconnected Alumina Nano Porous Surfaces
B. J. Zhang and K. J. Kim. Applied Physics Letters 101, 054104 (2012) [PDF] [DOI]

Morphological Change of Plain and Nano-Porous Surfaces during Boiling and its Effect on Nucleate Pool Boiling Heat Transfer

Morphological Change of Plain and Nano-Porous Surfaces during Boiling and its Effect on Nucleate Pool Boiling Heat Transfer
C. Y. Lee, B. J. Zhang, and K. J. Kim. Experimental Thermal and Fluid Science 40, 150–158 (2012) [DOI]

Dropwise Condensation Modeling Suitable for Superhydrophobic Surfaces

Dropwise Condensation Modeling Suitable for Superhydrophobic Surfaces
S. Kim and K. J. Kim. Journal of Heat Transfer 133(8), 081502 (2011) [DOI]

Pool Boiling Heat Transfer with Nano-porous Surface

Pool Boiling Heat Transfer with Nano-porous Surface
C. Y. Lee, M. M. H. Bhuiya, and K. J. Kim. International Journal of Heat and Mass Transfer  53, 4274 (2010) [DOI]

A Study on Effective use of Heat Transfer Additives in the Process of Steam Condensation
S. Vemuri, K. J. Kim, and Y. T. Kang. International Journal of Refrigeration 29(5), 724-734 (2006) [DOI]

Cost Effective Techniques for Enhancing Heat Transfer Rate in Steam Condensation
S. Vemuri, K. J. Kim, A. Razani, T. W. Bell, B. Wood. Journal of Thermophysics and Heat Transfer 19(1), 101-105 (2005) [DOI]

Predicting the Environmental Pollution from Bottom Contaminated Sediments Induced by Hydraulic Cutterhead Dredge
C.-H. Je and K. J. Kim. International Journal of Environmentally Conscious Design and Manufacturing 11(3), 1-9 (2003)

Second Law Analysis and Optimization of a Combined Triple Power Cycle
I. O. Marrero, A. M. Lefsaker, A. Razani, and K. J. Kim. Energy Conversion and Management 43(4), 557-573 (2002) [DOI]

The Effective Use of Heat Transfer Additives for Steam Condensation
K. J. Kim, A. M. Lefsaker, A. Razani, and A. Stone. Applied Thermal Engineering 21(18),1863-1874 (2001) [DOI]

Enhanced Steam Condensation as a Result of Heat Transfer Additives
A. Stone, J. W. Paquette, K. J. Kim, and A. Razani. International Journal of Environmentally Conscious Design and Manufacturing 10(4), 1-8 (2001)

A New Absorption Heat Pumps
 K. T. Feldman, Jr., C. Jensen, K. J. Kim, and A. Razani. ASHRAE Transactions 104(1), 1427-1433 (1998)

Thermal Conductivity Measurements of Metal Hydride Compacts Developed for High-Power Reactors
G. Lloyd, K. J. Kim, A. Razani, and K. T. Feldman, Jr. Journal of Thermophysics and Heat Transfer 12(2), 132-137 (1998) [DOI]

Heat-driven Hydride Slurry Heat Pumps
K. J. Kim, K. T. Feldman, Jr., and A. Razani. International Journal of Refrigeration 20(5), 339-351 (1997) [DOI]

Performance Evaluations of LiCl and LiBr for Absorber Design Applications in the Open Cycle Absorption Refrigeration System
K. J. Kim, T. A. Ameel, and B. D. Wood. Journal of Solar Energy Engineering  119(2),165-173 (1997) [DOI]