The insulating ingredient of the traditional transformer is a mineral oil with low combustibility and biodegradability. As a result, it is unsuitable for current and future transformer applications. Furthermore, finding fossil fuels is becoming increasingly difficult. As a result of the aforementioned limitations, there is a need to look for a replacement shielding oil. This study analysed the crucial characteristics of two biodegradable oils – namely, olive and palm oils – against worldwide standards. In addition, a 1 kVA transformer was subjected to a load test using olive and palm oils in place of traditional insulating solutions to assess their practical feasibility. The authors also looked into the technical feasibility of making a percentage-based blend. According to study results, vegetable oil is a choice superior to mineral oil for electrical and fire protection. However, the density of vegetable oil is substantially higher than that of mineral oil. As a result, the cooling tube of a transformer must be carefully considered throughout its construction. Vegetable oils also have a higher concentration of lipids with a higher molecular weight. The load test revealed that palm oil performs better than mineral oil and olive oil as a liquid dielectric. Furthermore, palm oil with a higher concentration of mineral oil provides properties superior to those of others.
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March 2024
Research Article|
June 21 2023
Feasibility analysis of new green liquid dielectrics for transformers
Thenkaraimuthu Mariprasath, ME, PhD;
Department of Electrical and Electronics Engineering/R&D Cell, K.S.R.M. College of Engineering (Autonomous), Kadapa, India
(corresponding author: ts.mariprasath@gmail.com)
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Putha Kishore, MSc, PhD;
Putha Kishore, MSc, PhD
Assistant Professor
Department of Sciences (Physics), Indian Institute of Information Technology, Design and Manufacturing Kurnool, Kurnool, India
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Manchineellu Padmavathi, MSc, PhD
Manchineellu Padmavathi, MSc, PhD
Assistant Professor
Department of Physics, SKR & SKR Government College for Women (A), Kadapa, Kadapa, India
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(corresponding author: ts.mariprasath@gmail.com)
Publisher: Emerald Publishing
Received:
April 07 2023
Accepted:
May 25 2023
Online ISSN: 2049-1239
Print ISSN: 2049-1220
Emerald Publishing Limited: All rights reserved
2024
Green Materials (2024) 12 (1): 41–45.
Article history
Received:
April 07 2023
Accepted:
May 25 2023
Citation
Mariprasath T, Kishore P, Padmavathi M (2024), "Feasibility analysis of new green liquid dielectrics for transformers". Green Materials, Vol. 12 No. 1 pp. 41–45, doi: https://doi.org/10.1680/jgrma.23.00038
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