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首页> 外文期刊>電子情報通信学会技術研究報告. 機構デバイス. Electromechanical Devices >Simulation and Experimental Study of Arc Motion in a Low-Voltage Circuit Breaker Considering Wall Ablation
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Simulation and Experimental Study of Arc Motion in a Low-Voltage Circuit Breaker Considering Wall Ablation

机译:考虑壁消融的低压断路器电弧运动的仿真与实验研究

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This paper focuses on the numerical and experimental investigations of the influence of two polymers (PA6 and POM) on the arc behavior during arc motion process. The mathematical model of 3-dimensional air arc plasma considering the ablation of lateral walls is built based on magnetic hydro-dynamics (MHD). By adopting the commercial computational fluid dynamics (CFD) package based on control-volume method, the above MHD model is solved and the distribution of temperature field, concentration field, flow field and electrical potential field in the arc chamber are calculated. The simulation results indicate that the vapor concentration behind the arc column is higher than that in front of the arc column because of the existence of "vortex" in the arc chamber. The use of polymers causes the maximal arc voltage increase 16.2% with POM and 18.9% with PA6 in this case and causes the average arc velocity increase 52.1% with POM and 59.5% with PA6 in this case. The experiments are also carried out to study the influence of polymers on arc voltage and arc root position in the arc chamber during arc motion. The experimental results prove the validity of the numerical investigation.
机译:本文重点研究了两种聚合物(PA6和POM)对电弧运动过程中电弧行为的影响的数值和实验研究。基于磁流体动力学(MHD),建立了考虑到侧壁消融的三维空气电弧等离子体数学模型。采用基于控制量法的商业计算流体动力学(CFD)软件包,求解了上述MHD模型,并计算了电弧室内温度场,浓度场,流场和电势场的分布。模拟结果表明,由于电弧室中存在“涡流”,因此电弧塔后方的蒸气浓度高于电弧塔前的蒸气浓度。在这种情况下,使用聚合物会导致最大电弧电压在POM中增加16.2%,在PA6中增加18.9%,在这种情况下导致平均电弧速度在POM中增加52.1%,在PA6中增加59.5%。还进行了实验以研究聚合物在电弧运动过程中对电弧电压和电弧室中电弧根位置的影响。实验结果证明了数值研究的有效性。

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