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Optimization of High-Voltage Self-Blast Interrupters by Gas Flow and Electric Field Computations

机译:通过气流和电场计算优化高压自爆灭弧室

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摘要

Self-blast interrupters have the advantage of operating with low mechanical energy as they build up the pressure of the arc extinguishing gas flow from the thermal energy of the arc. This creates a higher pressure, but also a higher gas temperature than in interrupters with mechanical compression. Detailed flow field and electric field computations are necessary to achieve under such conditions the energy removal and dielectric recovery in view of an increase in breaking capacity and voltage rating. In particular, the optimization of the electric field/gas density distribution E/ρ is a tool to improve the short-circuit and capacitive current breaking performance.
机译:自爆灭弧室的优点是可以以较低的机械能运行,因为它们会利用电弧的热能建立灭弧气流的压力。与具有机械压缩的灭弧室相比,这产生了更高的压力,但同时也产生了更高的气体温度。考虑到分断能力和额定电压的增加,必须进行详细的流场和电场计算才能在这种条件下实现能量去除和介电恢复。特别是,电场/气体密度分布E /ρ的优化是改善短路和电容性电流分断性能的工具。

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