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Influence of Different Factors on the Interruption Characteristics of Paralleled of High-Voltage SF_6 Circuit Breakers with a Highly Coupled Split Reactor

机译:不同因素对高分体电抗器并联SF_6高压断路器并联中断特性的影响

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Paralleled high-voltage SF_6 circuit breakers with a highly coupled split reactor (HCSR) have an excellent interruption performance, because it is expected that this structure could realize the function of automatic current-sharing when the current flow through both branches and automatic cunent-limiting when the current flow through only one branch. In this paper, a mathematical model had been built for this interrupting device by coupling the equivalent circuit equations into the magneto-hydro-dynamics (MHD) arc model. The influence of different factors including different operation moments, different filling pressures and different inductances are investigated. The dielectric recovery strength after the interruption processes is also investigated. The simulation results show that the paralleled high-voltage SF_6 circuit breakers with a highly coupled split reactor have excellent interruption performance. The automatic current-sharing and current-limiting functions of the HCSR under different interruption conditions all show excellent performance, and the 252 kV paralleled SF_6 circuit breakers with HCSR has successfully interrupted 252 kV/101 kA short circuit current in state laboratory of China recently.
机译:具有高耦合分流电抗器(HCSR)的并联高压SF_6断路器具有出色的中断性能,因为期望这种结构在电流同时流经两个支路和自动电流限制时可以实现自动均流功能当电流仅流过一个分支时。在本文中,通过将等效电路方程耦合到磁流体动力学(MHD)电弧模型中,为该中断设备建立了数学模型。研究了不同因素(包括不同的操作力矩,不同的填充压力和不同的电感)的影响。还研究了中断过程后的介电恢复强度。仿真结果表明,并联的高压SF_6断路器与高耦合分流电抗器具有出色的中断性能。 HCSR在不同中断条件下的自动均流和限流功能均表现出优异的性能,并且带有HCSR的252 kV并联SF_6断路器最近在中国国家实验室成功中断了252 kV / 101 kA短路电流。

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