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A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect
A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect
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A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect
A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect

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A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect
A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect
Journal Article

A Numerical Study on the Decomposition and Diffusion Characteristics of SFsub.6 in Gas-Insulated Switchgear with Consideration of the Temperature Rising Effect

2022
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Overview
The optimized concentration of SF[sub.6] gas is the key to maintaining a good insulation performance by GIS equipment. The precise measurements of the SF[sub.6] concentration and decomposition byproducts could be used to indicate the remaining GIS insulation level during long-term operations. In this paper, a finite-element simulation model was created to investigate the SF[sub.6] gas decomposition and diffusion dynamics. A theoretical analysis and simulation of the overheating fault, i.e., the contact between the GIS disconnect switches, were carried out, followed by an estimation of the SF[sub.6] decomposition and diffusion characteristics caused by the local heating faults, based on the calculated flow velocity field and temperature field.
Publisher
MDPI AG
Subject

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