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Investigation on the Arc Ignition Characteristics and Energy Absorption of Liquid Metal Current Limiter Based on Self-Pinch Effect

机译:基于自夹效应的液态金属限流器电弧点火特性及能量吸收研究

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摘要

The GaInSn liquid metal current limiter based on the fluid pinch effect has broad application prospects due to its particular properties. However, the limited rated current and ability of power dissipation are the critical problems for its wide application. Firstly, the temperature distribution of the liquid metal current limiter (LMCL) was obtained by experiments with a rated current of 1 kA and the arc ignition phenomenon was observed with 1.5 kA, which indicates that the rated current is mainly limited by the arc rather than the high temperature compared to the traditional switchgears. Furthermore, an improved method is proposed by adding the paralleled pure resistance, impedance or another LMCL element to protect the setup from the fault energy concentration in the setup. The problem of a slower arc voltage increasing rate can be solved by adding a paralleled impedance with suitable parameters. Finally, the current limiting properties based on the improved method were investigated and the alternating oscillating current was found between two paralleled LMCL elements owing to their deviation of arc ignition in reality.
机译:基于流体夹挤效应的GaInSn液态金属限流器由于其独特的性能而具有广阔的应用前景。然而,有限的额定电流和功耗能力是其广泛应用的关键问题。首先,通过实验在额定电流为1 kA的情况下获得了液态金属限流器(LMCL)的温度分布,并在1.5 kA的情况下观察到电弧着火现象,这表明额定电流主要受电弧的限制而不是与传统开关柜相比,温度更高。此外,提出了一种改进的方法,通过添加并联的纯电阻,阻抗或其他LMCL元件来保护设备免受设备中故障能量的集中。可以通过添加具有适当参数的并联阻抗来解决电弧电压增加速率较慢的问题。最后,研究了基于改进方法的限流特性,并发现了两个并联的LMCL元件之间的交流振荡电流,这实际上是由于它们的电弧点火偏差引起的。

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