Simulation of the lightning impulse breakdown in insulating nanofluids and comparison to experimental results
ID:66 View Protection:ATTENDEE Updated Time:2022-08-29 11:01:35 Hits:309 Oral Presentation

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Abstract
In this work, a streamer model has been developed in COMSOL Multiphysics software in order to test the pre-breakdown and breakdown behavior of natural ester oil FR3 and two natural ester-based nanofluids under positive Lightning Impulse Voltage (LI BDV) and compare to experimental results. The two nanofluids contain SiC nanoparticles in the two weight percentage ratios (0.004% w/w and 0.008% w/w) respectively. The simulation results are compared to experimental ones, conducted in accordance with the IEC 60897 standard. The comparison proves that the increase in nanoparticles’ concentration should lead to improvement of LI BDV, which is not verified from the experimental results, probably due to the influence of rapid agglomeration regarding the higher concentration, which cannot be taken into account in the numerical model.
Keywords
simulation,transformer oil,insulating nanofluid,SiC nanoparticles,Lightning Impulse
Speaker
Konstantinos Koutras
PhD Student High Voltage Laboratory; University of Patras; Department of Electrical &; Computer Engineering

Submission Author
Konstantinos Koutras High Voltage Laboratory; Department of Electrical & Computer Engineering; University of Patras
Timotheos Fetsis High Voltage Laboratory, Department of Electrical & Computer Engineering, University of Patras
Georgios Peppas High Voltage Laboratory, Department of Electrical & Computer Engineering, University of Patras
Andreas Yiotis Technical University of Crete
Ioannis Gonos National Technical University of Athens
Eleftheria Pyrgioti High Voltage Laboratory, Department of Electrical & Computer Engineering, University of Patras
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