郑州大学电气与信息工程学院,郑州,450001
纸质出版:2025
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程显, 郭龙雨, 杜帅, 等. 环保型罐式多断口真空断路器气体绝缘与沿面闪络特性[J]. 高电压技术, 2025,51(6):2620-2630.
CHENG Xian, GUO Longyu, DU Shuai, et al. Gas Insulation and Surface Flashover Characteristics of Environment-friendly Tank Multi-break Vacuum Circuit Breakers[J]. 2025, 51(6): 2620-2630.
程显, 郭龙雨, 杜帅, 等. 环保型罐式多断口真空断路器气体绝缘与沿面闪络特性[J]. 高电压技术, 2025,51(6):2620-2630. DOI: 10.13336/j.1003-6520.hve.20241857.
CHENG Xian, GUO Longyu, DU Shuai, et al. Gas Insulation and Surface Flashover Characteristics of Environment-friendly Tank Multi-break Vacuum Circuit Breakers[J]. 2025, 51(6): 2620-2630. DOI: 10.13336/j.1003-6520.hve.20241857.
随着国家“双碳”政策的提出,采用自然气体绝缘与真空灭弧室开断的环保型罐式真空断路器是高压、超高压领域替代SF6断路器的有效手段,其绝缘气体选型方案与真空灭弧室陶瓷沿面闪络特性尚不清晰。首先进行了自然环保型绝缘气体干燥空气与CO2雷电冲击绝缘击穿试验,提出了环保型气体绝缘方案。其次,进行了环保型气体绝缘条件下真空灭弧室陶瓷外壳沿面闪络特性研究,并分析了中封环处气体-陶瓷-金属三结合点对沿面闪络特性的影响。结果表明:0.9 MPa干燥空气与0.9 MPa CO2可满足罐式多断口真空断路器绝缘配置要求;真空灭弧室沿面闪络电压随着气压增加而增大并呈现略微饱和趋势,0.9 MPa干燥空气真空灭弧室沿面闪络电压达到202.98 kV,中封环的引入使沿面闪络电压下降8.47%;金属微粒长度5 mm、距离高压端5 mm时陶瓷外壳沿面闪络电压幅值降低相对最大为49.67 kV;中封环的引入使此处表面电荷密度由6.62 μC/m2增至21.54 μC/m2,导致其沿面闪络电压下降。以上结果可为超高压领域发展环保型罐式真空断路器提供理论依据与试验支撑。
With the proposal of carbon peak and carbon neutrality target
the tank multi-break vacuum circuit breakers technology
which adopts natural gas insulation and vacuum interrupter for breaking technology
is an effective alternative to replace SF6 circuit breakers in the field of high voltage and ultra-high voltage; however
it is not clear to realize the selection of insulating gas and to understand the surface flashover mechanism of the vacuum interrupter ceramic shell. Firstly
the natural eco-friendly insulating gas dry air and CO2 lightning impulse breakdown tests were conducted
an environmentally friendly insulating gas scheme was proposed. On this basis
the surface flashover test of the vacuum interrupter ceramic shell was performed
and the gas-solid surface flashover mechanism was analyzed. The results show that 0.9 MPa dry air and 0.9 MPa CO2 can meet the requirements of the insulation configuration of environment-friendly vacuum circuit breakers. The surface flashover voltage increases with the increase of gas pressure and shows a slightly saturated trend
the surface flashover voltage of the vacuum interrupter by 0.9 MPa dry air reaches 202.98 kV
and the introduction of the center seal ring decreases the surface flashover voltage by 8.47%. When the length of metal particles is 5 mm and the distance from the high-voltage end is 5 mm
the surface flashover voltage amplitude of the ceramic shell is reduced to a relative maximum of 49.67 kV. The introduction of the center seal ring increases the surface charge density herein from 6.62 μC/m2 to 21.54 μC/m2
leading to a decrease in its surface flashover voltage. The above results can provide theoretical basis and experimental supports for the development of environmentally friendly tank vacuum circuit breakers in the ultra-high voltage field.
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