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Simulation of Arc Characteristics in Miniature Circuit Breaker

机译:微型断路器电弧特性的仿真

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This paper focuses on the numerical investigation of arc plasma behavior in low-voltage circuit breaker with arc-splitting process included. A 3-D simulation model of a certain type miniature circuit breaker product is built and calculated, which is based on magnetohydrodynamics theory. Aside from coupled electromagnetic and gas dynamic interactions being considered as usual, a thin layer of nonlinear electrical resistance elements is used to represent the voltage drop of plasma sheath and the formation of new arc roots. Thus, the arc-splitting process with ferromagnetic plates can be included. Arc motion is described in detail by the temperature distribution. Some interesting phenomena are observed in the simulation, such as the arc root jumping from contact to arc runner, the arc back commutation before splitting into series arcs by metallic plates, new arc root formation in splitting process, and, finally, the arc go across the splitter plates in the chamber. Moreover, the simulation result is compared with experimental result, which shows good agreement.
机译:本文重点研究了包含分弧过程的低压断路器中电弧等离子体行为的数值研究。基于磁流体动力学理论,建立并计算了某类型小型断路器产品的3-D仿真模型。除了通常考虑的耦合电磁和气体动力学相互作用外,还使用一薄层非线性电阻元件来表示等离子护套的电压降和新电弧根的形成。因此,可以包括利用铁磁板的电弧分离工艺。通过温度分布详细描述电弧运动。在仿真中观察到一些有趣的现象,例如,电弧根部从接触点跳到电弧流道,通过金属板将电弧分裂成串联电弧之前的反向电弧换向,在分裂过程中形成新的电弧根部,最后,电弧穿过腔室中的隔板。另外,将仿真结果与实验结果进行了比较,吻合良好。

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