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

M. Torlak, Samir Čaluk, Belma Bosović Hadžović, Amer Smajkic
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Abstract

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.
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高压SF6断路器仿真中气体某些物理性质的处理
摘要采用简化的高压断路器模型对SF6气体在喷嘴、触点及其最近周围环境中的非定常流动进行了仿真。SF6被认为是粘性的、可压缩的、用Redlich-Kwong模型描述的真实气体。由于气体的可压缩性,传热被考虑在内。由触点之间的电弧触发的热源不在当前的研究范围内,因此没有包括在模拟中。用可实现的k-ε模型描述了由气体粘度引起的湍流。在仿真模型中,假设其中一个接触侧——电极——以规定的速度运动。被移动电极“扫过”的部分空间被认为是人为增加粘度的气体,以模仿刚体行为。因此,在模型中没有使用计算网格的运动部分。以积分形式给出的质量、动量和能量守恒方程,采用有限体积法在非结构化计算网格上求解。
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