Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications

This paper investigates C4H2F6 , a promising environmentally friendly insulating gas that possesses high dielectric strength and a low global warming potential. The study focuses on examining the insulation properties of C4H2F6 when combined with CO2/N2 , aiming to assess its suitability as a subst...

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Main Authors: Ahmed, Rizwan, Abd Rahman, Rahisham, Adel S. Aldosary, Adel S. Aldosary, Baqer Al-Ramadan, Baqer Al-Ramadan, Ullah, Rahmat, Jamal, Arshad
Format: Article
Language:English
Published: Mdpi 2023
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Online Access:http://eprints.uthm.edu.my/10750/1/J16580_b41a74cb39ef676a538b1ec36f7a398e.pdf
http://eprints.uthm.edu.my/10750/
https://doi.org/10.3390/app13158940
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spelling my.uthm.eprints.107502024-01-17T01:51:32Z http://eprints.uthm.edu.my/10750/ Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications Ahmed, Rizwan Abd Rahman, Rahisham Adel S. Aldosary, Adel S. Aldosary Baqer Al-Ramadan, Baqer Al-Ramadan Ullah, Rahmat Jamal, Arshad T Technology (General) This paper investigates C4H2F6 , a promising environmentally friendly insulating gas that possesses high dielectric strength and a low global warming potential. The study focuses on examining the insulation properties of C4H2F6 when combined with CO2/N2 , aiming to assess its suitability as a substitute for SF6 in gas-insulated applications. Finite element analyses are performed to evaluate the field utilization factor and electric field distribution in the proposed mixture. The properties of liquefaction temperature were examined in this study to determine the optimal mixing ratio for applications that require a minimum working temperature. Extensive experimental investigations were carried out to assess the dielectric strength characteristics of the gas mixture in both uniform and quasi-uniform electric fields. It was found that pure HFO-1336mzz (E) exhibits a dielectric strength approximately 1.2–1.6 times higher than SF6 . Experimental results have revealed that the insulation performance of a 30% HFO-1336mzz (E)/CO2 mixture closely resembles that of SF6 , with a matching efficiency of up to 90% in a weakly uniform electric field. This remarkable performance can be attributed to a positive synergistic effect between HFO-1336mzz (E) and CO2 , combined with the gas mixture’s excellent self-recoverability property. These experimental findings are further supported by finite element analysis, which confirms the observed results. The 30% HFO-1336mzz (E)/CO2 gas mixture at 0.15–0.20 MPa pressure and constant 0.6 mm air gap reveal superior insulation tolerance and less sensitivity to the electric field, confirming its promising medium-voltage engineering applications. The associated results of this research provide a critical reference for the engineering application of the alternating (AC) and direct current (DC) insulation characteristics of the HFO-1336mzz (E)/CO2 gas mixture. Mdpi 2023 Article PeerReviewed text en http://eprints.uthm.edu.my/10750/1/J16580_b41a74cb39ef676a538b1ec36f7a398e.pdf Ahmed, Rizwan and Abd Rahman, Rahisham and Adel S. Aldosary, Adel S. Aldosary and Baqer Al-Ramadan, Baqer Al-Ramadan and Ullah, Rahmat and Jamal, Arshad (2023) Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications. Applied Sciences, 13 (8940). pp. 1-17. https://doi.org/10.3390/app13158940
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic T Technology (General)
spellingShingle T Technology (General)
Ahmed, Rizwan
Abd Rahman, Rahisham
Adel S. Aldosary, Adel S. Aldosary
Baqer Al-Ramadan, Baqer Al-Ramadan
Ullah, Rahmat
Jamal, Arshad
Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
description This paper investigates C4H2F6 , a promising environmentally friendly insulating gas that possesses high dielectric strength and a low global warming potential. The study focuses on examining the insulation properties of C4H2F6 when combined with CO2/N2 , aiming to assess its suitability as a substitute for SF6 in gas-insulated applications. Finite element analyses are performed to evaluate the field utilization factor and electric field distribution in the proposed mixture. The properties of liquefaction temperature were examined in this study to determine the optimal mixing ratio for applications that require a minimum working temperature. Extensive experimental investigations were carried out to assess the dielectric strength characteristics of the gas mixture in both uniform and quasi-uniform electric fields. It was found that pure HFO-1336mzz (E) exhibits a dielectric strength approximately 1.2–1.6 times higher than SF6 . Experimental results have revealed that the insulation performance of a 30% HFO-1336mzz (E)/CO2 mixture closely resembles that of SF6 , with a matching efficiency of up to 90% in a weakly uniform electric field. This remarkable performance can be attributed to a positive synergistic effect between HFO-1336mzz (E) and CO2 , combined with the gas mixture’s excellent self-recoverability property. These experimental findings are further supported by finite element analysis, which confirms the observed results. The 30% HFO-1336mzz (E)/CO2 gas mixture at 0.15–0.20 MPa pressure and constant 0.6 mm air gap reveal superior insulation tolerance and less sensitivity to the electric field, confirming its promising medium-voltage engineering applications. The associated results of this research provide a critical reference for the engineering application of the alternating (AC) and direct current (DC) insulation characteristics of the HFO-1336mzz (E)/CO2 gas mixture.
format Article
author Ahmed, Rizwan
Abd Rahman, Rahisham
Adel S. Aldosary, Adel S. Aldosary
Baqer Al-Ramadan, Baqer Al-Ramadan
Ullah, Rahmat
Jamal, Arshad
author_facet Ahmed, Rizwan
Abd Rahman, Rahisham
Adel S. Aldosary, Adel S. Aldosary
Baqer Al-Ramadan, Baqer Al-Ramadan
Ullah, Rahmat
Jamal, Arshad
author_sort Ahmed, Rizwan
title Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
title_short Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
title_full Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
title_fullStr Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
title_full_unstemmed Analysis of the Insulation Characteristics of Hexafluorobutene (C4H2F6) Gas and Mixture with CO2/N2 as an Alternative to SF6 for Medium-Voltage Applications
title_sort analysis of the insulation characteristics of hexafluorobutene (c4h2f6) gas and mixture with co2/n2 as an alternative to sf6 for medium-voltage applications
publisher Mdpi
publishDate 2023
url http://eprints.uthm.edu.my/10750/1/J16580_b41a74cb39ef676a538b1ec36f7a398e.pdf
http://eprints.uthm.edu.my/10750/
https://doi.org/10.3390/app13158940
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score 13.160551