Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines

The implementation of stranded conductors in flexible gas-insulated transmission lines (FGILs) requires field intensity minimization as well as field irregularity suppression in order to avoid dielectric breakdown. Moreover, the interdependence of enclosure and conductor sizes of FGILs regarding ele...

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Main Authors: Muhammad Junaid Alvi, Tahir Izhar, Asif Ali Qaiser, Hafiz Shafqat Kharal, Adnan Safdar
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/15/2988
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spelling doaj-ce73c1d44e2a4bb984ceb161c77c34b52020-11-25T01:53:24ZengMDPI AGApplied Sciences2076-34172019-07-01915298810.3390/app9152988app9152988Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission LinesMuhammad Junaid Alvi0Tahir Izhar1Asif Ali Qaiser2Hafiz Shafqat Kharal3Adnan Safdar4Department of Electrical Engineering, University of Engineering and Technology, 54890 Lahore, PakistanDepartment of Electrical Engineering, University of Engineering and Technology, 54890 Lahore, PakistanDepartment of Polymer Engineering, University of Engineering and Technology, 54890 Lahore, PakistanDepartment of Electrical Engineering, University of Engineering and Technology, 54890 Lahore, PakistanDepartment of Electrical Engineering, NFC Institute of Engineering and Fertilizer Research, 38090 Faisalabad, PakistanThe implementation of stranded conductors in flexible gas-insulated transmission lines (FGILs) requires field intensity minimization as well as field irregularity suppression in order to avoid dielectric breakdown. Moreover, the interdependence of enclosure and conductor sizes of FGILs regarding electrostatic aspects necessitate critical consideration of their dimensional specifications. In this research, geometric and electrostatic field optimization for FGILs regarding stranded conductors is performed. In addition, the effect of conductor irregularity on field dispersion is analyzed, and a semiconducting film (SCF)-coated stranded conductor is proposed as a potential candidate for FGILs. Considering the performed optimized design, an 11 kV scaled-down model of a 132-kV FGIL was also fabricated in order to practically analyze its electrostatic and dielectric performances regarding simple and SCF-coated stranded conductors. Simulation and experimental investigations revealed that the SCF-coated stranded conductor significantly minimized the field irregularity of the FGIL along with improving in its dielectric breakdown characteristics.https://www.mdpi.com/2076-3417/9/15/2988dielectric strengthfield gradingfield utilization factor (FUF)gas-insulated transmission linemetropolitanstranded conductor
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Junaid Alvi
Tahir Izhar
Asif Ali Qaiser
Hafiz Shafqat Kharal
Adnan Safdar
spellingShingle Muhammad Junaid Alvi
Tahir Izhar
Asif Ali Qaiser
Hafiz Shafqat Kharal
Adnan Safdar
Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
Applied Sciences
dielectric strength
field grading
field utilization factor (FUF)
gas-insulated transmission line
metropolitan
stranded conductor
author_facet Muhammad Junaid Alvi
Tahir Izhar
Asif Ali Qaiser
Hafiz Shafqat Kharal
Adnan Safdar
author_sort Muhammad Junaid Alvi
title Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
title_short Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
title_full Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
title_fullStr Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
title_full_unstemmed Field Optimization and Electrostatic Stress Reduction of Proposed Conductor Scheme for Pliable Gas-Insulated Transmission Lines
title_sort field optimization and electrostatic stress reduction of proposed conductor scheme for pliable gas-insulated transmission lines
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-07-01
description The implementation of stranded conductors in flexible gas-insulated transmission lines (FGILs) requires field intensity minimization as well as field irregularity suppression in order to avoid dielectric breakdown. Moreover, the interdependence of enclosure and conductor sizes of FGILs regarding electrostatic aspects necessitate critical consideration of their dimensional specifications. In this research, geometric and electrostatic field optimization for FGILs regarding stranded conductors is performed. In addition, the effect of conductor irregularity on field dispersion is analyzed, and a semiconducting film (SCF)-coated stranded conductor is proposed as a potential candidate for FGILs. Considering the performed optimized design, an 11 kV scaled-down model of a 132-kV FGIL was also fabricated in order to practically analyze its electrostatic and dielectric performances regarding simple and SCF-coated stranded conductors. Simulation and experimental investigations revealed that the SCF-coated stranded conductor significantly minimized the field irregularity of the FGIL along with improving in its dielectric breakdown characteristics.
topic dielectric strength
field grading
field utilization factor (FUF)
gas-insulated transmission line
metropolitan
stranded conductor
url https://www.mdpi.com/2076-3417/9/15/2988
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AT asifaliqaiser fieldoptimizationandelectrostaticstressreductionofproposedconductorschemeforpliablegasinsulatedtransmissionlines
AT hafizshafqatkharal fieldoptimizationandelectrostaticstressreductionofproposedconductorschemeforpliablegasinsulatedtransmissionlines
AT adnansafdar fieldoptimizationandelectrostaticstressreductionofproposedconductorschemeforpliablegasinsulatedtransmissionlines
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