DocumentCode :
32882
Title :
Thermal conductivity enhancement of transformer oil using functionalized nanodiamonds
Author :
Shukla, Gaurav ; Aiyer, Hemantkumar
Author_Institution :
Crompton Greaves Global R & D Center, Crompton Greaves Ltd., Mumbai, India
Volume :
22
Issue :
4
fYear :
2015
fDate :
Aug-15
Firstpage :
2185
Lastpage :
2190
Abstract :
To efficiently manage the increasing heat generation within the new generation power transformers, it is essential now to develop advanced dielectric nanofluids having high thermal conductivity. We report here the synthesis and characterization of stable high thermal conductivity Newtonian nanofluids using functionalized nanodiamonds in naphthenic transformer oil without compromising its viscosity and electrical insulating property. Functionalized nanodiamonds are dispersed in naphthenic oil, used as standard transformer oil, forming stable suspensions with high shelf life. The electrical resistivity, dissipation factor and viscosity of the base oil is maintained for the nano-oil containing small weight fraction of the filler (0.12 wt%), whereas the thermal conductivity was enhanced by 14.5%.
Keywords :
cooling; diamond; electrical resistivity; nanofluidics; power transformer insulation; thermal conductivity; transformer oil; viscosity; advanced dielectric nanofluids; dissipation factor; electrical resistivity; functionalized nanodiamond; nano-oil; naphthenic transformer oil; oil viscosity; power transformer cooling; power transformer insulation; thermal conductivity Newtonian nanofluid; thermal conductivity enhancement; Conductivity; Fluids; Loading; Oil insulation; Power transformer insulation; Thermal conductivity; Nanodielectrics; dielectric liquids; dielectric materials; insulation; nanofluid; power transformer cooling; power transformer insulation; thermal conductivity;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2015.004678
Filename :
7179181
Link To Document :
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