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Influence of Arc Energy to Puffer Pressure Rise for SF6 Circuit Breaker

机译:SF6断路器电弧能量对吹气压力升高的影响

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Due to the principle of extinguishing for SF6 high voltage circuit breaker, the throat will be clogged, and the arc energy will be transferred into the puffer chamber to increase the puffer pressure. That makes the arc energy play an important part in pressure character. Based on the first law of thermodynamics, the law of hydrokinetics and the second law of Newton, the mathematic model of pressure character of SF6 high voltage circuit breaker was built. Applying this method associating T100s test duty the gas pressure characters of the 252kV SF6 circuit breaker were calculated, the pressure build process were obtained and the influences of interrupted arc on gas pressure character, by comparing with the experimental result, the theoretical model can be modified and recalculated. And the influence of throat structural parameters to the characteristic of pressure was analyzed.
机译:由于SF6高压断路器灭火的原理,喉部将被堵塞,电弧能量将转移到吹气室中以增加吹气压力。这使得电弧能量在压力特征中发挥重要部分。基于第一律师的第一定律,水力学法和牛顿第二律法,建立了SF6高压断路器的压力特性的数学模型。应用该方法关联T100S试验占用252kV SF6断路器的气体压力特征,获得压力构建过程,通过与实验结果相比,可以改变理论模型的理论模型,获得压力构建过程。可以修改理论模型的气压特性的中断电弧的影响并重新计算。分析了喉部结构参数对压力特性的影响。

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