Simulation on the electric field distribution for hybrid circuit breaker based on vacuum gap and CO2 gas gap

Xian Cheng, Lian-yao Jiao, Zhanqing Chen
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Abstract

By series connected with vacuum circuit breaker, the relatively limited arc-interruption capacity of the gas circuit breaker, which employs CO2 gas as the substitution to SF6 gas, can be compensated to match with or approach to the interruption capacity of SF6 gas circuit breaker. To investigate and optimize the voltage distribution between vacuum gap and CO2 gas gap, the three dimension models of the hybrid circuit breaker in different arrangement and placement modes are built in this paper. Electric field simulation is carried on the hybrid circuit breaker models to analyze the voltage distribution of the hybrid circuit breaker under static and transient voltages. The results of simulation prove that preferable voltage distribution between two gaps can be obtained while the hybrid circuit breaker arranged and placed in “45° angle” mode. And the simulation results provide references for the establishment of the prototype of hybrid circuit breaker.
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基于真空间隙和CO2气隙的混合断路器电场分布仿真
通过与真空断路器串联,可以补偿以CO2气体代替SF6气体的气体断路器相对有限的断弧能力,使其达到或接近SF6气体断路器的断弧能力。为了研究和优化真空间隙和CO2气体间隙之间的电压分布,本文建立了混合断路器在不同布置和放置方式下的三维模型。对混合断路器模型进行了电场仿真,分析了混合断路器在静态电压和瞬态电压下的电压分布。仿真结果表明,混合断路器以“45°角”方式布置和放置时,可获得较好的两间隙电压分布。仿真结果为混合式断路器样机的建立提供了参考。
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