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KURIMSKÝ, J. RAJŇÁK, M. ŠÁRPATAKY, M. CIMBALA, R. PAULOVIČOVÁ, K. KRBAL, M. KOPČANSKÝ, P.
Original Title
Analysis of impulse withstand voltage of ester-based nanofluids
Type
journal article in Web of Science
Language
English
Original Abstract
Ester-based nanofluids constitute an effective ecological alternative to petroleum-derived dielectric fluids for electrical engineering industry. Pulse induced dielectric breakdown is a key cause of power device failure. In this paper, we deal with the lightning impulse breakdown voltage (LI BDV) in natural and synthetic ester-based (NE and SE) nanofluids with various concentrations of magnetite (Fe3O4) and fullerene (C-60) nanoparticles. The nanofluids show a decrement in positive polarity LI+ BDV as compared with the base ester. Negative polarity LI- BDV in the nanofluids is similar to that of base oils. Weibull statistical distributions are applied to analyse the results at different cumulative probabilities of 1 %, 10 %, and 50 %. Natural ester with C-60 nanoparticles shows higher positive LI+ BDV values at a low probability level, while the negative LI- BDV reaches higher values at higher probability levels. The decreased LI BDV in NE and SE due to the magnetite nanoparticles are attributed to the nanoparticle clustering and percolation. The tendency of C-60 nanoparticles to enhance the LI BDV in NE but not in SE is interpreted in the view of the nanoparticle concentration and oil's viscosity effect on the streamer branching and propagation.
Keywords
Nanofluid; Ester; Dielectric liquids; Fullerene; Magnetite; Lightning impulse; Dielectric breakdown
Authors
KURIMSKÝ, J.; RAJŇÁK, M.; ŠÁRPATAKY, M.; CIMBALA, R.; PAULOVIČOVÁ, K.; KRBAL, M.; KOPČANSKÝ, P.
Released
28. 8. 2024
Publisher
ELSEVIER
Location
AMSTERDAM
ISBN
2468-0230
Periodical
SURFACES AND INTERFACES
Year of study
Volume 53
Number
105032
State
Kingdom of the Netherlands
Pages count
13
URL
https://www.sciencedirect.com/science/article/pii/S246802302401188X
BibTex
@article{BUT189755, author="Juraj {Kurimský} and Michal {Rajňák} and Miloš {Šárpataky} and Roman {Cimbala} and Katarína {Paulovičová} and Michal {Krbal} and Peter {Kopčanský}", title="Analysis of impulse withstand voltage of ester-based nanofluids", journal="SURFACES AND INTERFACES", year="2024", volume="Volume 53", number="105032", pages="13", doi="10.1016/j.surfin.2024.105032", issn="2468-0230", url="https://www.sciencedirect.com/science/article/pii/S246802302401188X" }