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Study on the transverse burning action to contact shield during high-current vacuum interruptions in a solid insulated switchgear

机译:固体绝缘开关设备中大电流真空中断时接触屏蔽的横向燃烧作用研究

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Solid insulated switchgear (SIS) has been accepted widely and became much small-size, nowadays. However, the miniaturization of SIS has restriction on the distance between the internal bus and the vacuum interrupter (VI). This will not only affect the electrical insulation and partial discharge characteristics of the SIS, but also will affect the current breaking capacity of the SIS. In order to improve the breaking capacity of a miniaturization SIS, the purpose of this paper is to study the transverse magnetic blowing action in a SIS, to calculate the electrodynamic force affected by pass bus conductor, and to simulate the magnetic field distribution between contact gaps generated by pass bus conductor. Lastly, a magnetic shielding solutions for the transverse magnetic blowing action is given, which has passed the test verification. The results showed that a magnetic shield in a vacuum interrupter is a powerful solution to solve the arc transverse blowing action to contact shield caused by the bus magnetic field in a SIS vacuum Interruption.
机译:如今,固体绝缘开关设备(SIS)已被广泛接受并变得越来越小。但是,SIS的小型化限制了内部总线与真空灭弧室(VI)之间的距离。这不仅会影响SIS的电绝缘和局部放电特性,还会影响SIS的分流能力。为了提高小型SIS的断裂能力,本文的目的是研究SIS中的横向磁吹作用,计算通过母线导体影响的电动势,并模拟接触间隙之间的磁场分布由直通总线导体生成。最后,给出了用于横向磁吹作用的磁屏蔽解决方案,该方案已通过测试验证。结果表明,真空灭弧室中的磁屏蔽罩是解决SIS真空灭弧室中母线磁场引起的电弧横向吹向接触屏蔽罩的有力解决方案。

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