AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3

The AC breakdown performance of traditional insulating oils in transformers is often inadequate, leading to operational inefficiencies and environmental concerns. There is a growing need for alternatives that enhance transformer performance while being environmentally sustainable. This paper investi...

Full description

Bibliographic Details
Published in:INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
Main Authors: Zamri, Dzhahirul; Ali, N. H. Nik; Umair, Muhammad; Ismail, A. S.; Azis, N.; Alhabill, F. N.; Mamat, M. H.
Format: Article
Language:English
Published: UNIV TUN HUSSEIN ONN MALAYSIA 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001412646300028
author Zamri
Dzhahirul; Ali
N. H. Nik; Umair
Muhammad; Ismail
A. S.; Azis
N.; Alhabill
F. N.; Mamat, M. H.
spellingShingle Zamri
Dzhahirul; Ali
N. H. Nik; Umair
Muhammad; Ismail
A. S.; Azis
N.; Alhabill
F. N.; Mamat, M. H.
AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
Engineering
author_facet Zamri
Dzhahirul; Ali
N. H. Nik; Umair
Muhammad; Ismail
A. S.; Azis
N.; Alhabill
F. N.; Mamat, M. H.
author_sort Zamri
spelling Zamri, Dzhahirul; Ali, N. H. Nik; Umair, Muhammad; Ismail, A. S.; Azis, N.; Alhabill, F. N.; Mamat, M. H.
AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
English
Article
The AC breakdown performance of traditional insulating oils in transformers is often inadequate, leading to operational inefficiencies and environmental concerns. There is a growing need for alternatives that enhance transformer performance while being environmentally sustainable. This paper investigates the AC breakdown performance of organic transformer oil, specifically using vegetable oil, mixed with Iron Oxide Hematite (alpha-Fe2O3), Zinc Oxide (ZnO), and Nickel Oxide (NiO) nanoparticles (NPs). These NPs are incorporated into the organic transformer oil to form Nano Fluids (NFs). The study examines the effect of NPs with different concentrations on the AC breakdown voltage (AC-BDV) of organic transformer oil. The One Minute Power Frequency Test is employed to test the AC-BDV, while X-ray diffraction (XRD) characterizes the structural properties of the NPs. The results indicate that NFs containing 6g of (alpha-Fe2O3) NPs and 6g of (ZnO) NPs exhibit the most significant improvement in AC-BDV, showing enhancements of approximately 49.86% and 40.17%, respectively. Furthermore, NFs based on (alpha-Fe2O3) with a concentration of 0.01g/ml outperform other NPs, demonstrating an average breakdown voltage of 13.525 kV. Consequently, the experimental analysis concludes that (alpha- Fe2O3) based NFs offer effective electrical insulation, serving as a potential substitute for mineral oil in transformers. This innovation not only improves transformer performance but also aligns with environmental concerns, particularly the shift from mineral oil to biodegradable options like organic transformer oil. Different types of nanoparticles and their concentrations directly impact the AC breakdown voltage, underscoring the potential of nanoparticle-infused organic transformer oil in transforming traditional insulating systems.
UNIV TUN HUSSEIN ONN MALAYSIA
2229-838X

2024
16
7
10.30880/ijie.2024.16.07.028
Engineering
Green Published
WOS:001412646300028
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001412646300028
title AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
title_short AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
title_full AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
title_fullStr AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
title_full_unstemmed AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
title_sort AC Breakdown Performance of Organic Transformer Oil Using Different Nano Oxide Fillers of ZnO, NiO and α-Fe2O3
container_title INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
language English
format Article
description The AC breakdown performance of traditional insulating oils in transformers is often inadequate, leading to operational inefficiencies and environmental concerns. There is a growing need for alternatives that enhance transformer performance while being environmentally sustainable. This paper investigates the AC breakdown performance of organic transformer oil, specifically using vegetable oil, mixed with Iron Oxide Hematite (alpha-Fe2O3), Zinc Oxide (ZnO), and Nickel Oxide (NiO) nanoparticles (NPs). These NPs are incorporated into the organic transformer oil to form Nano Fluids (NFs). The study examines the effect of NPs with different concentrations on the AC breakdown voltage (AC-BDV) of organic transformer oil. The One Minute Power Frequency Test is employed to test the AC-BDV, while X-ray diffraction (XRD) characterizes the structural properties of the NPs. The results indicate that NFs containing 6g of (alpha-Fe2O3) NPs and 6g of (ZnO) NPs exhibit the most significant improvement in AC-BDV, showing enhancements of approximately 49.86% and 40.17%, respectively. Furthermore, NFs based on (alpha-Fe2O3) with a concentration of 0.01g/ml outperform other NPs, demonstrating an average breakdown voltage of 13.525 kV. Consequently, the experimental analysis concludes that (alpha- Fe2O3) based NFs offer effective electrical insulation, serving as a potential substitute for mineral oil in transformers. This innovation not only improves transformer performance but also aligns with environmental concerns, particularly the shift from mineral oil to biodegradable options like organic transformer oil. Different types of nanoparticles and their concentrations directly impact the AC breakdown voltage, underscoring the potential of nanoparticle-infused organic transformer oil in transforming traditional insulating systems.
publisher UNIV TUN HUSSEIN ONN MALAYSIA
issn 2229-838X

publishDate 2024
container_volume 16
container_issue 7
doi_str_mv 10.30880/ijie.2024.16.07.028
topic Engineering
topic_facet Engineering
accesstype Green Published
id WOS:001412646300028
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001412646300028
record_format wos
collection Web of Science (WoS)
_version_ 1825722599507755008