Numerical simulation of arc motion during interruption process of low-voltage circuit breakers
Degui Chen, Li Xingwen, Ji Liang, Xin Zhou
Abstract
Degui Chen, Li Xingwen, Ji Liang, Xin Zhou
Abstract
Mathematic equations describing arc root movement on different geometries of contact surfaces for low-voltage circuit breakers are proposed in this paper. Coupling with a chain-type arc model and considering mechanical movement, magnetic field and electrical transient circuit, an arc interruption numerical model for low-voltage circuit breakers has been developed. Based on this model, the arc motion during interruption process for low-voltage circuit breakers was simulated. The paper also analyzes the arc motion characteristics in different configurations of arc runners.
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Mathematic equations describing arc root movement on different geometries of contact surfaces for low-voltage circuit breakers are proposed in this paper. Coupling with a chain-type arc model and considering mechanical movement, magnetic field and electrical transient circuit, an arc interruption numerical model for low-voltage circuit breakers has been developed. Based on this model, the arc motion during interruption process for low-voltage circuit breakers was simulated. The paper also analyzes the arc motion characteristics in different configurations of arc runners.
Key concepts: Circuit breaker, Arc (geometry), Transient recovery voltage, Process (computing), Voltage, Computer science, Electrical engineering, Engineering