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Post-arc period of vacuum circuit breakers: New 2D simulation and experimental results

机译:电弧断路器的弧后时期:新的二维模拟和实验结果

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A 2D model of sheath expansion and plasma decay for transient recovery voltages has been developed in order to improve understanding of the physical phenomena related to the post-arc phase. This new model considers charged and neutral particles produced during the arcing period, electrode evaporation and also the collisions between charged species and metal vapor atoms. New 2D simulation results are presented for 20 mm diameter copper electrodes for various electrode surface temperature profiles. Sheath evolution, residual plasma density, post-arc current and electric field distribution are presented. Experimental investigations were carried out in a specially designed set-up which allows measurement of post-arc current and plasma sheath dynamics. Electron temperature and plasma density have also been measured experimentally. The comparison between the simulation data and experimental results are presented.
机译:为了改善对与弧后阶段有关的物理现象的理解,已经开发了用于瞬态恢复电压的鞘管膨胀和等离子体衰减的二维模型。这个新模型考虑了在电弧放电期间产生的带电粒子和中性粒子,电极蒸发以及带电物质与金属蒸气原子之间的碰撞。针对各种电极表面温度曲线,提出了直径为20 mm的铜电极的新2D模拟结果。介绍了鞘的演变,残余等离子体密度,电弧后电流和电场分布。实验研究是在专门设计的装置中进行的,该装置可以测量电弧后电流和等离子体鞘层动力学。电子温度和等离子体密度也已经通过实验测量。给出了仿真数据与实验结果的比较。

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