Sledovať
In Cheol Bang
Názov
Citované v
Citované v
Rok
A benchmark study on the thermal conductivity of nanofluids
J Buongiorno, DC Venerus, N Prabhat, T McKrell, J Townsend, ...
Journal of Applied Physics 106 (9), 2009
14162009
Surface wettability change during pool boiling of nanofluids and its effect on critical heat flux
SJ Kim, IC Bang, J Buongiorno, LW Hu
International journal of heat and mass transfer 50 (19-20), 4105-4116, 2007
11472007
Boiling heat transfer performance and phenomena of Al2O3–water nano-fluids from a plain surface in a pool
IC Bang, SH Chang
International Journal of Heat and Mass Transfer 48 (12), 2407-2419, 2005
10642005
Effects of nanoparticle deposition on surface wettability influencing boiling heat transfer in nanofluids
SJ Kim, IC Bang, J Buongiorno, LW Hu
Applied Physics Letters 89 (15), 2006
4972006
Investigation of viscosity and thermal conductivity of SiC nanofluids for heat transfer applications
SW Lee, SD Park, S Kang, IC Bang, JH Kim
International Journal of Heat and Mass Transfer 54 (1-3), 433-438, 2011
3982011
Effects of nanofluids containing graphene/graphene-oxide nanosheets on critical heat flux
SD Park, S Won Lee, S Kang, IC Bang, JH Kim, HS Shin, DW Lee, ...
Applied Physics Letters 97 (2), 2010
2652010
Characteristic stability of bare Au-water nanofluids fabricated by pulsed laser ablation in liquids
HJ Kim, IC Bang, J Onoe
Optics and Lasers in Engineering 47 (5), 532-538, 2009
2252009
Study of pool boiling and critical heat flux enhancement in nanofluids
SJ Kim, IC Bang, J Buongiorno, LW Hu
Bulletin of the Polish Academy of Sciences Technical Sciences, 211-216-211-216, 2007
2062007
Viscosity measurements on colloidal dispersions (nanofluids) for heat transfer applications
DC Venerus, J Buongiorno, R Christianson, J Townsend, IC Bang, ...
Applied rheology 20 (4), 44582, 2010
1872010
Study on flow boiling critical heat flux enhancement of graphene oxide/water nanofluid
SW Lee, KM Kim, IC Bang
International Journal of Heat and Mass Transfer 65, 348-356, 2013
1352013
Pool boiling CHF of reduced graphene oxide, graphene, and SiC-coated surfaces under highly wettable FC-72
H Seo, JH Chu, SY Kwon, IC Bang
International Journal of Heat and Mass Transfer 82, 490-502, 2015
1092015
Pool boiling CHF enhancement by graphene-oxide nanofluid under nuclear coolant chemical environments
SD Park, SW Lee, S Kang, SM Kim, IC Bang
Nuclear Engineering and Design 252, 184-191, 2012
1092012
Nanotechnology for advanced nuclear thermal-hydraulics and safety: boiling and condensation
IC Bang, JH Jeong
Nuclear engineering and technology 43 (3), 217-242, 2011
922011
Visualization of the subcooled flow boiling of R-134a in a vertical rectangular channel with an electrically heated wall
IC Bang, SH Chang, WP Baek
International Journal of Heat and Mass Transfer 47 (19-20), 4349-4363, 2004
922004
Effects of graphene oxide nanofluids on heat pipe performance and capillary limits
KM Kim, IC Bang
International Journal of Thermal Sciences 100, 346-356, 2016
912016
Hybrid heat pipe based passive in-core cooling system for advanced nuclear power plant
YS Jeong, KM Kim, IG Kim, IC Bang
Applied Thermal Engineering 90, 609-618, 2015
892015
Measurement of key pool boiling parameters in nanofluids for nuclear applications
IC Bang, J Buongiorno, LW Hu, H Wang
Journal of Power and Energy Systems 2 (1), 340-351, 2008
872008
Hybrid graphene and single-walled carbon nanotube films for enhanced phase-change heat transfer
H Seo, HD Yun, SY Kwon, IC Bang
Nano letters 16 (2), 932-938, 2016
752016
Critical heat flux enhancement in flow boiling of Al2O3 and SiC nanofluids under low pressure and low flow conditions
SW Lee, SD Park, S Kang, SM Kim, H Seo, DW Lee, IC Bang
Nucl. Eng. Technol 44 (4), 429-436, 2012
712012
A photographic study on the near-wall bubble behavior in subcooled flow boiling
SH Chang, IC Bang, WP Baek
International journal of thermal sciences 41 (7), 609-618, 2002
702002
Systém momentálne nemôže vykonať operáciu. Skúste to neskôr.
Články 1–20