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Study of the Influence of Arc Ignition Position on Arc Motion in Low-Voltage Circuit Breaker

机译:低压断路器中电弧点火位置对电弧运动的影响研究

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Arc-motion process is crucial to the interruption capability of the low-voltage circuit breaker. First, to a simplified chamber with full open venting, with a 2-D optical-fiber arc-motion measurement system, experiments were done to measure the arc-motion velocity in order to analyze the influence of different arc ignition position on the arc motion. It demonstrates that the larger the volume behind the arc is, the slower the arc moves. In addition, the influence of the gassing material on arc-motion velocity was also studied experimentally. Then, the commercial computational fluid dynamics software FLUENT was adapted and modified to develop a 2-D magneto-hydrodynamic model of the arc with the same conditions as the experimental model. The simulation result was consistent with the experiment conclusions.
机译:电弧运动过程对于低压断路器的中断能力至关重要。首先,在一个具有全开式排气口的简化室中,使用二维光纤电弧运动测量系统,进行了实验以测量电弧运动速度,以便分析不同电弧点火位置对电弧运动的影响。它表明弧后的体积越大,弧移动越慢。另外,还实验研究了放气材料对电弧运动速度的影响。然后,对商业计算流体动力学软件FLUENT进行修改和修改,以在与实验模型相同的条件下开发电弧的二维磁流体动力学模型。仿真结果与实验结论吻合。

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