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Phenomena generated by splitter plates on low-voltage electric arc dynamics

机译:隔板对低压电弧动力学产生的现象

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摘要

The breaking of an electric arc is obtained by its lengthening, its splitting up and its cooling in the quenching chamber made up of fins called splitters. However, the latter sometimes have unwanted effects. The presented study deals with the phenomena generated by their presence and their influence on the arc behaviour. The arc is observed thanks to a tool called "magnetic camera" based on the measurement of the magnetic field outside the device. For a given time, the magnetic picture allows the reconstitution of the average current line that represents the arc. Several tests were carried out with a quenching chamber consisting of iron splitters and prospective peak currents varying from 1370 A to 6300 A. Two configurations of positioning were studied. The first one consists in putting three tilted splitters located at the same level; the second one is made up of four splitters, each with a shifted position compared to the others. Other parameters are also analyzed: arc voltage, current limiting, thermal stress, energy, break time. In general, the arc enters the quenching chamber where it is split. However, for high currents, it does not put out quickly after penetrating the splitters but oscillates for a few moments in front of them.
机译:电弧的断开是通过加长,分裂和在由称为分离器的散热片组成的淬火室中进行冷却来实现的。但是,后者有时会产生不良影响。提出的研究解决了因其存在而产生的现象及其对电弧行为的影响。借助称为“磁性摄像机”的工具,可以根据设备外部磁场的测量结果来观察电弧。对于给定的时间,磁性图片允许重构代表电弧的平均电流线。使用由铁分离器和预期峰值电流在1370 A至6300 A之间变化的淬火室进行了几次测试。研究了两种定位结构。第一个步骤是将三个倾斜的分离器放置在同一高度。第二个由四个分离器组成,每个分离器的位置相比其他分离器。还分析了其他参数:电弧电压,电流限制,热应力,能量,断开时间。通常,电弧进入淬火室,在那里电弧被分裂。但是,对于大电流,它在穿透分离器后并不会很快熄灭,而是会在分离器前面振荡一会儿。

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