期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
The Voltage Distribution Characteristics of a Hybrid Circuit Breaker During High Current Interruption 被引量:7
1
作者 程显 段雄英 +3 位作者 廖敏夫 黄智慧 罗彦 邹积岩 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第8期800-806,共7页
Hybrid circuit breaker (HCB) technology based on a vacuum interrupter and a SF6 interrupter in series has become a new research direction because of the low-carbon requirements for high voltage switches. The vacuum ... Hybrid circuit breaker (HCB) technology based on a vacuum interrupter and a SF6 interrupter in series has become a new research direction because of the low-carbon requirements for high voltage switches. The vacuum interrupter has an excellent ability to deal with the steep rising part of the transient recovery voltage (TRV), while the SF6 interrupter can withstand the peak part of the voltage easily. An HCB can take advantage of the interrupters in the current interruption process. In this study, an HCB model based on the vacuum ion diffusion equations, ion density equation, and modified Cassie-Mayr arc equation is explored. A simulation platform is constructed by using a set of software called the alternative transient program (ATP). An HCB prototype is also designed, and the short circuit current is interrupted by the HCB under different action sequences of contacts. The voltage distribution of the HCB is analyzed through simulations and tests. The results demonstrate that if the vacuum interrupter withstands the initial TRV and interrupts the post-arc current first, then the recovery speed of the dielectric strength of the SF6 interrupter will be fast. The voltage distribution between two interrupters is determined by their post-arc resistance, which happens after current-zero, and subsequently, it is determined by the capacitive impedance after the post-arc current decays to zero. 展开更多
关键词 hybrid circuit breaker vacuum arc SF6 arc transient recovery voltage di- electric recovery breaking capacity
下载PDF
高压SF_6断路器非平衡态等离子体电弧的熄弧特性 被引量:28
2
作者 王飞鸣 林莘 徐建源 《高电压技术》 EI CAS CSCD 北大核心 2014年第10期3073-3084,共12页
SF6高压断路器开断过程是结合电弧特性、压气特性、气流特性、电磁特性、温度特性、介质恢复特性等的多物理动态过程。为避免其熄弧重燃,考虑电弧能量对等离子体内电子温度和重粒子温度的动态作用的情况下,建立了SF6气体电弧等离子体非... SF6高压断路器开断过程是结合电弧特性、压气特性、气流特性、电磁特性、温度特性、介质恢复特性等的多物理动态过程。为避免其熄弧重燃,考虑电弧能量对等离子体内电子温度和重粒子温度的动态作用的情况下,建立了SF6气体电弧等离子体非平衡态双温度电弧数学模型。计算得出了等离子体中各粒子密度随电子和重粒子温度变化曲线,带电粒子密度随温度和压强的变化趋势,以及非平衡态等离子体电导率在不同压强下随温度变化的曲线。通过126 kV断路器负载开断过程压气特性和气流特性计算,得到了熄弧过程中灭弧室内的压强、温度和密度分布。考虑空间电荷对灭弧室内电场分布的影响,计算了气流运动过程中的电场分布,计算了熄弧过程中介质恢复特性分布,分析了电弧等离子体熄灭动态过程中微观参数的变化情况。计算表明:1 600 A燃弧2 ms小电流电弧开断弧后0.2 ms内介质恢复平均速度为175 kV/ms,明显快于电压恢复速度37.7 kV/ms;开断速度对不同燃弧时间下的介质恢复特性有直接的影响,燃弧时间越短越容易发生重燃弧现象;燃弧时间<2 ms时,开断速度为11 m/s的击穿裕度值较大,可以保证弧后不会发生重燃弧现象。 展开更多
关键词 SF6 高压断路器 非平衡态等离子体 空间电荷 耦合计算 介质恢复特性 SF6
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部