电力工程技术2024,Vol.43Issue(2) :179-188.DOI:10.12158/j.2096-3203.2024.02.019

冲击电弧作用下C4F7N/CO2气体灭弧性能仿真分析

Simulation analysis of arc extinguishing performance of C4F7N/CO2 gas with under impulse arc

吴东 陈文贵
电力工程技术2024,Vol.43Issue(2) :179-188.DOI:10.12158/j.2096-3203.2024.02.019

冲击电弧作用下C4F7N/CO2气体灭弧性能仿真分析

Simulation analysis of arc extinguishing performance of C4F7N/CO2 gas with under impulse arc

吴东 1陈文贵1
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作者信息

  • 1. 广西高校先进制造与自动化技术重点实验室(桂林理工大学),广西 桂林 541006
  • 折叠

摘要

C4F7N/CO2混合气体是目前最有潜力替代SF6的气体之一.为了探讨C4F7N/CO2混合气体的灭弧能力,文中根据电弧能量平衡理论,建立电弧能量平衡方程组,获取管道内部超压随时间的变化规律.同时,基于磁流体动力学模型,使用COMSOL Multiphysics软件建立压爆气流防雷间隙灭弧结构的二维磁流体模型,在雷电流幅值为4kA的条件下,对管道内不同比例C4F7N/CO2混合气体在冲击电弧作用下的熄弧特性进行仿真分析.基于上述方法,结合电弧能量平衡理论,分析模型中电导率、速度以及压强的变化规律.与理论结果对比分析得出:同一工况条件下,20%C4F7N/80%CO2 的灭弧性能较优,其次为 10%C4F7N/90%CO2 与 5%C4F7N/95%CO2,并且熄弧时间符合气吹灭弧的要求.

Abstract

Currently,the C4F7N/CO2 hybrid gas is regarded as one of the most promising SF6 substitutes.In orderto explore the arc quenching capabilities of the C4F7N/CO2 gas mixture,a setofarc energybalance equations is developed in accordance with the arc energy balance theory to determine the change law of overpressure within the arc-quenching pipe with time.In the paper,COMSOL Multiphysics software is used to establish a two-dimensional magneto-hydrodynamic model of the arc quenching structure of the pressure-explosive gas flow lightning gap,and the arc quenching characteristics of the different ratios of C4F7N/CO2 gas mixtures in the pipeline are simulated and analyzed in the condition that the amplitude of the lightning current is 4 kA under the action of the impulse arc.Based on the above method,the change laws of conductivity,velocity and pressure are analyzed in the model by combining the arc energy balance theory.When compared to the theoretical results,it can be shown that 20%C4F7N/80%CO2 extinguishes arcs more effectively than 10%C4F7N/90%CO2 or 5%C4F7N/95%CO2 does,while the arc quenching time is in line with the specifications for air blowing to extinguish arcs.

关键词

C4F7N/CO2混合气体/灭弧性能/电弧能量平衡理论/磁流体动力学模型/冲击电弧/熄弧时间

Key words

C4F7N/CO2 hybrid gas/arc quenching capabilities/arc energy balance theory/magneto-hydrodynamic model/impulse arc/arc quenching time

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基金项目

广西自然科学基金(2022GXNSFBA035-613)

出版年

2024
电力工程技术
江苏省电力公司 江苏省电机工程学会

电力工程技术

CSTPCD北大核心
影响因子:0.969
ISSN:2096-3203
参考文献量32
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