考虑触点运动与电弧力相互作用的低压断路器开关电弧计算

Haonan Sun, H. Joo, Yi Wu, M. Rong, C. Bae, Young-geun Kim
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引用次数: 2

摘要

在中断过程中,触点分离对各种开关齿轮的电弧运动或电弧伸长都有重要影响。触点的运动可以增加电弧长度,从而决定电弧的行为。反之,电弧电流将在中断期间发生变化,洛伦兹力将影响触点的运动。为了使电弧模拟更加准确和通用,有必要考虑这一现象。本文建立了具有触点开启过程的低压电弧等离子体三维仿真模型。同时考虑了护套和非线性磁性材料。计算基于磁流体动力电弧模型,并开发了一种耦合不同软件分别计算流体和电磁场的方法来满足上述要求。此外,还对低压断路器进行了测试,以验证具有U-I特性的仿真。
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Calculation of the Switch Arc in Low Voltage Circuit Breaker Considering the Interaction Between the Contact Movement and the Arc Force
During the interruption, the separation of the contacts plays an important role in different kinds of switch gears since the arc motion or the arc elongation will be affected. The movement of the contact could increase the arc length and then decide the arc behavior. In reverse, the arc current will be changed during the interruption and the Lorentz force will then influence the movement of the contact. It is necessary to consider this phenomenon to make the arc simulation more accurate and universal. In this work, low voltage arc plasma simulation in 3D with contact opening process has been established. Both the sheath and nonlinear magnetic material were taken into consideration. Calculation was based on magneto-hydrodynamic arc model, and a method of coupling different software to separately calculate fluid and electromagnetic field has been developed to fulfill the requirements above. Furthermore, a low voltage circuit breaker has been tested to validate the simulation with U-I characteristics.
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