Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME

In this work, the aging behavior of liquid insulation in transformers using chemically modified refined, bleached, and deodorized palm oil (RBDPO) olein is investigated. The transesterification process is used to modify RBDPO olein to produce palm oil methyl ester (POME), which is used as a base flu...

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Main Authors: Sharifah Masniah, Wan Masra, Yanuar Zulardiansyah, Arief, Siti Kudnie, Sahari, Andrew Ragai, Henry Rigit, Md. Rezaur, Rahman, Nur Sabrina, Suhaimi
Format: Article
Language:English
Published: IEEE 2023
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Online Access:http://ir.unimas.my/id/eprint/42903/1/Thermal_Aging_Effects_IEEE%20TDEI-yanuar-Sep2023-1.pdf
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spelling my.unimas.ir.429032023-10-02T02:49:53Z http://ir.unimas.my/id/eprint/42903/ Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME Sharifah Masniah, Wan Masra Yanuar Zulardiansyah, Arief Siti Kudnie, Sahari Andrew Ragai, Henry Rigit Md. Rezaur, Rahman Nur Sabrina, Suhaimi TK Electrical engineering. Electronics Nuclear engineering In this work, the aging behavior of liquid insulation in transformers using chemically modified refined, bleached, and deodorized palm oil (RBDPO) olein is investigated. The transesterification process is used to modify RBDPO olein to produce palm oil methyl ester (POME), which is used as a base fluid for nanofluid (NF) preparation. The performance of POME with the dispersion of semiconducting titanium oxide (TiO2) and conducting multi-walled carbon nanotube (MWCNT) nanoparticles (NPs) at different concentrations on the AC breakdown voltage (AC BDV) as insulation in transformers is evaluated for their aging behavior. The accelerated aging was conducted under sealed conditions at a temperature of 130°C for 1000 hours. The results show that incorporating TiO 2 and MWCNT NPs into POME did not have an adverse effect on the BDV, regardless of the doping concentrations. Notably, POME-based TiO2 NFs exhibited the highest AC BDV after thermal aging, specifically at a concentration of 0.05 g/L. Anderson-Darling goodness-of-fit statistics were performed on the experimental data to verify their agreement with the Normal and Weibull distributions. IEEE 2023-09-22 Article PeerReviewed text en http://ir.unimas.my/id/eprint/42903/1/Thermal_Aging_Effects_IEEE%20TDEI-yanuar-Sep2023-1.pdf Sharifah Masniah, Wan Masra and Yanuar Zulardiansyah, Arief and Siti Kudnie, Sahari and Andrew Ragai, Henry Rigit and Md. Rezaur, Rahman and Nur Sabrina, Suhaimi (2023) Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME. IEEE Transactions on Dielectrics and Electrical Insulation, 2023 (1). pp. 1-11. ISSN 1558-4135 https://ieeedeis.org/ DOI 10.1109/TDEI.2023.3318218
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Sharifah Masniah, Wan Masra
Yanuar Zulardiansyah, Arief
Siti Kudnie, Sahari
Andrew Ragai, Henry Rigit
Md. Rezaur, Rahman
Nur Sabrina, Suhaimi
Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
description In this work, the aging behavior of liquid insulation in transformers using chemically modified refined, bleached, and deodorized palm oil (RBDPO) olein is investigated. The transesterification process is used to modify RBDPO olein to produce palm oil methyl ester (POME), which is used as a base fluid for nanofluid (NF) preparation. The performance of POME with the dispersion of semiconducting titanium oxide (TiO2) and conducting multi-walled carbon nanotube (MWCNT) nanoparticles (NPs) at different concentrations on the AC breakdown voltage (AC BDV) as insulation in transformers is evaluated for their aging behavior. The accelerated aging was conducted under sealed conditions at a temperature of 130°C for 1000 hours. The results show that incorporating TiO 2 and MWCNT NPs into POME did not have an adverse effect on the BDV, regardless of the doping concentrations. Notably, POME-based TiO2 NFs exhibited the highest AC BDV after thermal aging, specifically at a concentration of 0.05 g/L. Anderson-Darling goodness-of-fit statistics were performed on the experimental data to verify their agreement with the Normal and Weibull distributions.
format Article
author Sharifah Masniah, Wan Masra
Yanuar Zulardiansyah, Arief
Siti Kudnie, Sahari
Andrew Ragai, Henry Rigit
Md. Rezaur, Rahman
Nur Sabrina, Suhaimi
author_facet Sharifah Masniah, Wan Masra
Yanuar Zulardiansyah, Arief
Siti Kudnie, Sahari
Andrew Ragai, Henry Rigit
Md. Rezaur, Rahman
Nur Sabrina, Suhaimi
author_sort Sharifah Masniah, Wan Masra
title Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
title_short Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
title_full Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
title_fullStr Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
title_full_unstemmed Thermal Aging Effects on the Electrical Breakdown Voltage of TiO2 and MWCNT Nanofluids Based on POME
title_sort thermal aging effects on the electrical breakdown voltage of tio2 and mwcnt nanofluids based on pome
publisher IEEE
publishDate 2023
url http://ir.unimas.my/id/eprint/42903/1/Thermal_Aging_Effects_IEEE%20TDEI-yanuar-Sep2023-1.pdf
http://ir.unimas.my/id/eprint/42903/
https://ieeedeis.org/
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score 13.209306