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Analysis of the Dielectric Breakdown Characteristics for a 252-kV Gas Circuit Breaker

机译:252 kV气体断路器的介电击穿特性分析

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A study was carried out on the characteristics of the dielectric strength of gaseous working medium in a puffer circuit breaker following current interruption. A reduced critical electric field strength $(E/N)_{rm cr}$ was defined. Its value for ${rm SF}_{6}$ gas within the temperature range of 300 to 3000 K and pressure range of 1 to 32 atm was obtained by solving the Boltzmann equation with most recent atomic data, which allows the determination of the critical electric field strength $E_{rm cr}$ at different temperature and pressure. The dielectric behavioral pattern of the breaker was then characterized by applying the $E_{rm cr}$ data to the temperature and pressure fields obtained by a 2-D magneto-hydro- dynamics model encompassing all important mechanisms operating in the arcing process. The $E_{rm cr}$ distribution at 80 and 110 $mu$s after current zero was then compared to the electric-field distribution to arrive at important information regarding the weakest point or regions in the design. Using a standard rate of rise of recovery voltage profile, the critical dielectric withstand level of the breaker was also predicted.
机译:对电流中断后的吹风机断路器中的气态工作介质的介电强度特性进行了研究。定义了降低的临界电场强度<公式> =($ E / N)_ {rm cr} $ 。在300至3000 K的温度范围内和压力范围内的 $ {rm SF} _ {6} $ 气体的值通过使用最新的原子数据求解玻尔兹曼方程,可得到1至32 atm的原子,从而可以确定临界电场强度。<公式公式类型=“ inline”> $ E_ {rm cr} $ 在不同的温度和压力下。然后通过将 $ E_ {rm cr} $ 数据应用于温度和压力来表征断路器的介电行为模式通过二维磁流体动力学模型获得的磁场,包括在电弧过程中运行的所有重要机制。 $ E_ {rm cr} $ 分布在80和110时 $ mu $ s与电场分布进行比较,以获得有关设计中最弱点或最弱区域的重要信息。使用恢复电压曲线的标准上升率,还可以预测断路器的临界介电强度。

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