Performance Enhancement of Aged Mineral Oil by Blending Synthetic Ester for Transformer Insulation Applications †
Abstract
:1. Introduction
2. Materials and Methods
2.1. Blending of Oils
2.2. Characterization
3. Results and Discussion
3.1. Appearance of the Blended Oil
3.2. Breakdown Voltage
3.3. Flashpoint and Fire Point
3.4. Viscosity
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
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Oil Type | Flash Point (°C) | Fire Point (°C) |
---|---|---|
Fresh mineral oil | 150 | 170 |
Aged mineral oil | 145 | 165 |
Synthetic ester | 260 | 316 |
Synthetic ester + Fresh mineral oil | ||
1:4 | 150 | 180 |
2:3 | 180 | 200 |
4:1 | 226 | 244 |
Synthetic ester + Aged mineral oil | ||
1:4 | 190 | 200 |
2:3 | 212 | 220 |
4:1 | 260 | 316 |
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Hiriyanna, M.N.; Basavaraju, A.; Kumar, M.A.; Gurunathegowda, G.; Shanmugam, G. Performance Enhancement of Aged Mineral Oil by Blending Synthetic Ester for Transformer Insulation Applications. Eng. Proc. 2023, 59, 136. https://doi.org/10.3390/engproc2023059136
Hiriyanna MN, Basavaraju A, Kumar MA, Gurunathegowda G, Shanmugam G. Performance Enhancement of Aged Mineral Oil by Blending Synthetic Ester for Transformer Insulation Applications. Engineering Proceedings. 2023; 59(1):136. https://doi.org/10.3390/engproc2023059136
Chicago/Turabian StyleHiriyanna, Monika Nagathihalli, Ashwini Basavaraju, Moulya Ashok Kumar, Gagana Gurunathegowda, and Gowrishankar Shanmugam. 2023. "Performance Enhancement of Aged Mineral Oil by Blending Synthetic Ester for Transformer Insulation Applications" Engineering Proceedings 59, no. 1: 136. https://doi.org/10.3390/engproc2023059136
APA StyleHiriyanna, M. N., Basavaraju, A., Kumar, M. A., Gurunathegowda, G., & Shanmugam, G. (2023). Performance Enhancement of Aged Mineral Oil by Blending Synthetic Ester for Transformer Insulation Applications. Engineering Proceedings, 59(1), 136. https://doi.org/10.3390/engproc2023059136