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On Treatment of Some Physical Properties of Gas in Simulation of High-Voltage SF6 Circuit Breakers Cover

On Treatment of Some Physical Properties of Gas in Simulation of High-Voltage SF6 Circuit Breakers

Open Access
|Jan 2023

Abstract

Simulation of unsteady flow of SF6 gas in a simplified high-voltage circuit breaker model describing the nozzle, contacts and their nearest surrounding is presented. SF6 is considered as viscous, compressible, real gas described by Redlich-Kwong model. Heat transfer is taken into account due to the gas compressibility. The heat source, triggered by the electric arc between the contacts, was out of the scope of the current research, thus it was not included in the simulations presented. Turbulence, caused by the gas viscosity, is described using realizable k-ε model. In the simulation model, one of the contact sides – electrodes, is considered as moving at prescribed velocity. The part of the space ‘swept’ by the moving electrode is considered as the gas with imposed artificially increased viscosity in order to imitate the rigid body behaviour. Thus, no moving parts of the computational mesh are used in the model. The conservation equations of mass, momentum and energy, given in integral form, are solved using a finite-volume method on unstructured computational grids.

DOI: https://doi.org/10.2478/bhee-2022-0009 | Journal eISSN: 2566-3151 | Journal ISSN: 2566-3143
Language: English
Page range: 19 - 24
Submitted on: Sep 2, 2022
Accepted on: Dec 9, 2022
Published on: Jan 14, 2023
Published by: Bosnia and Herzegovina National Committee CIGRÉ
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Muris Torlak, Samir Čaluk, Belma Bosović Hadžović, Amer Smajkić, published by Bosnia and Herzegovina National Committee CIGRÉ
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.