Study of Shock Wave Development in Cold Flow of Gas Circuit Breaker for Improving Capacitive Current Switching

Wei Gu, Ruyuan Tian, Zide Guo, D. Feng
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引用次数: 1

Abstract

Abstract Capacitive current switching performance of SF6 circuit breaker is determined by combined action of gas flow and electric field in interruption chamber. Computational fluid dynamics method is used to study the development of shock waves inside a SF6 circuit breaker under the condition of capacitive current switching. It was found that a shock wave exists and travels with the pin contact during the contact opening. Existence of shock waves reduces the local gas density around contact head, while the contact head is also stressed by high electric field at the same time. If the region of low gas density coincides with the region with high electric strength, local dielectric performance will be significantly reduced. Using E/ρ as the dielectric performance index, when the local value of E/ρ exceeds the gas breakdown criterion, it will result in restrike to the capacitive current switching. The causes of high E/ρ are studied by analyzing the shock waves during the sequential periods of contact travel. Since the gap between the pin contact and nozzle throat strongly affects the strength of shock wave, the behavior of gap is studied with the calculation of E/ρ to find its influence on capacitive current switching.
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改进容性电流开关的气体断路器冷流激波发展研究
SF6断路器的容性电流开关性能是由断室内气流和电场共同作用决定的。采用计算流体力学方法研究了电容电流开关条件下SF6断路器内部激波的发展。结果表明,在触点开启过程中,存在激波并随触点传播。冲击波的存在降低了接触头周围的局部气体密度,同时接触头也受到高电场的应力。如果气体密度低的区域与电强度高的区域重合,则局部介电性能将显著降低。以E/ρ作为介电性能指标,当E/ρ的局部值超过气体击穿判据时,将导致电容电流开关重击。通过分析连续接触过程中产生的冲击波,研究了高E/ρ的原因。由于引脚触头与喷嘴喉道之间的间隙对激波强度有很大影响,因此通过计算E/ρ来研究间隙的行为,以找出其对电容电流开关的影响。
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