화학공학소재연구정보센터
검색결과 : 10건
No. Article
1 Novel hybrid nanofluid with tunable specific heat and thermal conductivity: Characterization and performance assessment for energy related applications
Chandran MN, Manikandan S, Suganthi KS, Rajan KS
Energy, 140, 27, 2017
2 Novel copper - Propylene glycol nanofluid as efficient thermic fluid for potential application in discharge cycle of thermal energy storage
Krishnan RY, Manikandan S, Suganthi KS, Vinodhan VL, Rajan KS
Energy, 107, 482, 2016
3 Convective heat transfer performance of CuO-water nanofluids in U-shaped minitube: Potential for improved energy recovery
Vinodhan VL, Suganthi KS, Rajan KS
Energy Conversion and Management, 118, 415, 2016
4 Development of CuO-ethylene glycol nanofluids for efficient energy management: Assessment of potential for energy recovery
Zennifer MA, Manikandan S, Suganthi KS, Vinodhan VL, Rajan KS
Energy Conversion and Management, 105, 685, 2015
5 Improved transient heat transfer performance of ZnO-propylene glycol nanofluids for energy management
Suganthi KS, Rajan KS
Energy Conversion and Management, 96, 115, 2015
6 Heat transfer performance and transport properties of ZnO-ethylene glycol and ZnO-ethylene glycol-water nanofluid coolants
Suganthi KS, Vinodhan VL, Rajan KS
Applied Energy, 135, 548, 2014
7 A formulation strategy for preparation of ZnO-Propylene glycol-water nanofluids with improved transport properties
Suganthi KS, Rajan KS
International Journal of Heat and Mass Transfer, 71, 653, 2014
8 Liquid-layering induced, temperature-dependent thermal conductivity enhancement in ZnO-propylene glycol nanofluids
Suganthi KS, Parthasarathy M, Rajan KS
Chemical Physics Letters, 561, 120, 2013
9 Transport properties of ultra-low concentration CuO-water nanofluids containing non-spherical nanoparticles
Priya KR, Suganthi KS, Rajan KS
International Journal of Heat and Mass Transfer, 55(17-18), 4734, 2012
10 Temperature induced changes in ZnO-water nanofluid: Zeta potential, size distribution and viscosity profiles
Suganthi KS, Rajan KS
International Journal of Heat and Mass Transfer, 55(25-26), 7969, 2012