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Arc structure, arc motion and gas pressure between laterally enclosed arc runners

机译:横向封闭的电弧流道之间的电弧结构,电弧运动和气压

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Arc motion along parallel arc runners tightly enclosed by lateral walls was investigated experimentally, both with and without an exhaust barrier at the outlet. High speed movies (33000 frames/s) were taken and the gas pressure was measured at several locations along the path of arc motion. The measurements show how both arc shape and motion depend on the parameters arc length (5-15 mm), arc current (1-5 kA), magnetic blast field (40-100 mT), and exhaust constriction. In many cases both are shape and are motion were influenced by a plasma volume forming a "nose" in front of the arc next one of the electrodes. Spontaneous formation of an anode spot and/or a cathode spot in front of the arc may ignite a parallel current path and initiate a commutation process. The plasma volume in front of the arc is less significant at low electrode distance, high arc current, high blast field, and in more realistic chamber geometries with an exhaust barrier. Cold gas shock waves hitting the arc strongly influence both arc motion and shape. Simulation of arc motion may be a helpful tool in order to save expensive experiments when designing low voltage miniature circuit breakers. The high speed movies showed that the arc motion is sometimes strongly influenced by commutation processes requiring a very complex arc model.
机译:实验研究了沿着侧壁紧紧封闭的并联弧跑轨的电弧运动,在出口处没有排气屏障。采用高速电影(33000帧/秒),在沿电弧运动路径的几个位置测量气体压力。测量结果显示了弧形和运动如何取决于参数电弧长度(5-15毫米),电弧电流(1-5 kA),磁场电压(40-100mt)和排气收缩。在许多情况下,两种情况都是形状并且是运动受到形成在电弧前面的前面的“鼻子”的等离子体体积的影响。弧形前部的阳极点和/或阴极点的自发形成可以点燃平行电流路径并发起换向过程。电弧前面的等离子体体积在低电极距离,高电流,高爆炸场中具有不太显着的,并且在具有排气屏障的更现实的室几何形状中。冷气冲击波击中电弧强烈影响弧运动和形状。电弧运动的仿真可以是有用的工具,以便在设计低压微型断路器时节省昂贵的实验。高速电影显示电弧运动有时受到需要非常复杂的电弧模型的换向过程的强烈影响。

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