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Influence of the axial magnetic field on sheath development after current zero in a vacuum circuit breaker 被引量:2
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作者 Yi CHEN Fei YANG +3 位作者 Hao SUN Yi WU Chunping NIU Mingzhe RONG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2017年第6期20-25,共6页
After current zero,which is the moment when the vacuum circuit breaker interrupts a vacuum arc,sheath development is the first process in the dielectric recovery process.An axial magnetic field(AMF) is widely used i... After current zero,which is the moment when the vacuum circuit breaker interrupts a vacuum arc,sheath development is the first process in the dielectric recovery process.An axial magnetic field(AMF) is widely used in the vacuum circuit breaker when the high-current vacuum arc is interrupted.Therefore,it is very important to study the influence of different AMF amplitudes on the sheath development.The objective of this paper is to study the influence of different AMF amplitudes on the sheath development from a micro perspective.Thus,the particle in cell-Monte Carlo collisions(PIC-MCC) method was adopted to develop the sheath development model.We compared the simulation results with the experimental results and then validated the simulation.We also obtained the speed of the sheath development and the energy density of the ions under different AMF amplitudes.The results showed mat the larger the AMF amplitudes are,the faster the sheath develops and the lower the ion energy density is,meaning the breakdown is correspondingly more difficult. 展开更多
关键词 vacuum arc SHEATH PIC-MCC axial magnetic field vacuum circuit breakers
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Vacuum Dielectric Recovery Characteristics of a Novel Current Limiting Circuit Breaker Base on Artificial Current Zero 被引量:19
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作者 JIANG Zhuangxian ZHUANG Jinwu WANG Chen WU Jin LIU Luhui 《中国电机工程学报》 EI CSCD 北大核心 2012年第13期I0021-I0021,204,共1页
为了保证新型强迫换流型真空直流限流断路器关断短路电流的可靠性,对该型断路器分断过程的真空介质恢复特性进行研究。设计了与断路器关断过程等效的介质恢复试验方案,通过等效试验结果和理论推演公式的拟合,得到了新型强迫换流型限... 为了保证新型强迫换流型真空直流限流断路器关断短路电流的可靠性,对该型断路器分断过程的真空介质恢复特性进行研究。设计了与断路器关断过程等效的介质恢复试验方案,通过等效试验结果和理论推演公式的拟合,得到了新型强迫换流型限流断路器真空灭弧室触头打开过程的动态介质强度恢复规律。研究结果表明:减小燃弧能量、提高触头运动速度可提高真空灭弧室介质的临界击穿电压;综合考虑燃弧时间与燃弧能量及触头开距的关系,随着燃弧时间的增加,真空灭弧室临界击穿电压先减小后增大。所得介质恢复规律可以作为新型断路器优化设计的参考依据。 展开更多
关键词 零电流开关 电路断路器 限流断路器 真空灭弧室 恢复特性 介质 人工 直流电气系统
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Dynamic Simulation and Opening Bouncing Analysis of Vacuum Circuit Breaker with Permanent Magnetic Actuator 被引量:3
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作者 LIN Xin CAO Chen LI Bin LIU Yang XU Jianyuan 《高电压技术》 EI CAS CSCD 北大核心 2013年第7期1772-1777,共6页
关键词 断路器 动态模拟分析 弹簧 关闭时间
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New Generation of Outdoor Vacuum Circuit Breakers with Rated Voltage up to 40.5 kV 被引量:1
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作者 Alexey Chaly Sergey Benzoruk 《Journal of Energy and Power Engineering》 2012年第2期315-320,共6页
The article describes design peculiarities of the novel compact vacuum circuit breaker with rated voltage 40.5 kV. The design incorporates several novel technical solutions: polycarbonate support insulation, mono-sta... The article describes design peculiarities of the novel compact vacuum circuit breaker with rated voltage 40.5 kV. The design incorporates several novel technical solutions: polycarbonate support insulation, mono-stable magnetic actuator, labyrinth pulling insulator, core-type flexible contact and new compact vacuum interrupter (VI). Phases are encapsulated into silicone rubber providing required creepage distance and excellent tracking resistance. These novelties along with extensive modeling of the mechanical and electrical fields followed by design optimization resulted in weight reduction of more than 50% compared with alternatives available in the market. And this is in spite of built in sensors measuring: phase currents, zero-sequence current, phase voltages. 展开更多
关键词 Outdoor vacuum circuit breaker magnetic actuator combined voltage and current sensor silicon rubber.
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Study of post-arc residual plasma dissipation process of vacuum circuit breakers based on a 2D particle-in-cell model
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作者 Yongpeng MO Zongqian SHI Shenli JIA 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第4期124-132,共9页
In order to get an insight into residual plasma radial motion during the post-arc stage,a twodimensional(2D)cylindrical particle-in-cell(PIC)model is developed.Firstly,influences of a virtual boundary condition on the... In order to get an insight into residual plasma radial motion during the post-arc stage,a twodimensional(2D)cylindrical particle-in-cell(PIC)model is developed.Firstly,influences of a virtual boundary condition on the residual plasma motion are studied.For purpose of validating this 2D cylindrical particle-in-cell model,a comparison between one-dimensional particle-in-cell model is also presented in this paper.Then a study about the influences of the rising rate of transient recovery voltage on the residual plasma radial motion is presented on the basis of the 2D PIC model. 展开更多
关键词 vacuum circuit breakers residual plasma dissipation particle-in-cell simulation
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Study on Restrike Phenomena for 40.5-kV Vacuum Circuit Breakers
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作者 Yan Jing Ma Zhiying 《Electricity》 2006年第1期44-46,共3页
When interrupting short circuit fault by 40.5-kV vacuum circuit breakers, it is significant to eliminate multiple restrike phenomena, which occur frequently and result in high overvoltage and even interruption failure... When interrupting short circuit fault by 40.5-kV vacuum circuit breakers, it is significant to eliminate multiple restrike phenomena, which occur frequently and result in high overvoltage and even interruption failure. A synthetic circuit that can supply a DC recovery voltage after current zero was used to study multiple restrike phenomena in switching. Some key factors including breaking current, clearance between open contacts, electrode structure and contact material, which may affect restrike characteristics, were studied. Under various clearances, the statistical probability of restrike was obtained. As a result, the best scope of clearance between open contacts was found. The performance of CuCr50/50 and CuCr75/25 material were compared. Two kinds of electrode structures, namely 1/2 coil structure and cup-shaped axial magnetic structure, were tested. After a high-current interruption, conditioning effoct was realized and the probability of restrike decreased. 展开更多
关键词 vacuum circuit breaker RESTRIKE contact material electrode structure conditioning effect
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The Voltage Distribution Characteristics of a Hybrid Circuit Breaker During High Current Interruption 被引量:8
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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
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Study on TRV of circuit breaker in two substation operational ways and its countermeasure
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作者 李国亮 夏文华 李微微 《Journal of Measurement Science and Instrumentation》 CAS 2012年第4期393-396,共4页
To verify a vacuum breaker's feasibility,when a transformer substation chooses a vacuum circuit breaker,it takes two different actual operational ways to cut off a transformer.This paper,using the power system com... To verify a vacuum breaker's feasibility,when a transformer substation chooses a vacuum circuit breaker,it takes two different actual operational ways to cut off a transformer.This paper,using the power system computer aided design/electro magnetic transient in DC system(PSCAD/EMTDC)software,simulates the substation system and studies transient recovery voltage(TRV)caused by the two different ways which can cut off a with load transformer or a no-load transformer.Simulation and calculation results show that TRV indexes of the first way are much higher than that of the second one,and their TRV indexes are both in a permissible range.The breaker is proved to be available.Besides,this paper proves that paralleling resistance has a good effect when the indexes exceed the standard.The resistance value depends on specific circumstances. 展开更多
关键词 transient recovery voltage(TRV) power system computer aided design/electro magnetic transient in DC system (PSCAD/EMTDC) transformer vacuum circuit breaker
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基于磁环的海上风电场高频重燃过电压的抑制研究
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作者 方春恩 王渊朝 +2 位作者 潘麟 李伟 牟霖 《高压电器》 北大核心 2026年第1期167-175,共9页
随着“低碳环保”的发展,国家在节能减排和环境污染上愈发的重视,作为清洁能源之一的风电,成为国家政策大力支持的产业。为了准确模拟出海上风电场的高电压暂态特性及抑制措施,对海上风电场重燃过电压进行了建模仿真,在分析了海上风电... 随着“低碳环保”的发展,国家在节能减排和环境污染上愈发的重视,作为清洁能源之一的风电,成为国家政策大力支持的产业。为了准确模拟出海上风电场的高电压暂态特性及抑制措施,对海上风电场重燃过电压进行了建模仿真,在分析了海上风电场过电压的机理上,基于ATP-EMTP进行了真空断路器、变压器、高频磁环的建模,建立了海上风电系统并仿真了真空断路器的分闸重燃现象。提出了利用高频磁环对重燃过电压的抑制措施,分析了不同磁环材质、不同磁环长度、不同磁环内外径、不同磁环形状大小对重燃过电压的抑制效果,得出磁环对海上风电场重燃过电压抑制的可行性及有效性。 展开更多
关键词 高频磁环 真空断路器 重燃过电压 ATP-EMTP 过电压抑制
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基于绝缘支柱组件的ZW32真空断路器防潮性能优化设计
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作者 罗翔 林一泓 +4 位作者 张振宇 王健 吴涵 李衍川 谢芸 《高压电器》 北大核心 2026年第1期10-17,共8页
为了提升ZW32真空断路器的防潮性能,文中提出了一种绝缘支柱组件设计方案,它能够防止机构室内的潮湿气体向绝缘支柱内壁、绝缘拉杆外表面聚集。基于设计的绝缘支柱组件,进行了三维电场及温度场分析,研制了新型ZW32真空断路器,并进行了... 为了提升ZW32真空断路器的防潮性能,文中提出了一种绝缘支柱组件设计方案,它能够防止机构室内的潮湿气体向绝缘支柱内壁、绝缘拉杆外表面聚集。基于设计的绝缘支柱组件,进行了三维电场及温度场分析,研制了新型ZW32真空断路器,并进行了样机试验验证。结果表明,设计的新型ZW32真空断路器绝缘性能及其他电气性能完全满足国网要求,样机的基本外形尺寸与现行的ZW32真空断路器一致,具有一定的经济性。 展开更多
关键词 绝缘支柱组件 ZW32真空断路器 防潮性能 优化设计
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基于MOJS算法和BP神经网络的剩磁式单稳态操动机构结构及励磁电路优化设计
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作者 李培源 刘晓明 +1 位作者 陈海 郑佳圆 《真空科学与技术学报》 北大核心 2026年第1期91-100,共10页
为提升真空断路器中剩磁式单稳态操动机构的性能,建立了磁滞特性与驱动电路暂态响应耦合的场-路联合有限元分析模型。构建了以操动机构结构参数与励磁电路参数为输入层,合闸保持力、合闸末平均速度及分闸响应时间为输出层的反向传播神... 为提升真空断路器中剩磁式单稳态操动机构的性能,建立了磁滞特性与驱动电路暂态响应耦合的场-路联合有限元分析模型。构建了以操动机构结构参数与励磁电路参数为输入层,合闸保持力、合闸末平均速度及分闸响应时间为输出层的反向传播神经网络(BPNN)预测模型。误差分析结果表明,该预测模型能够通过严谨的统计验证,准确刻画输入变量与输出响应之间的定量关系。此外,采用多目标水母搜索(MOJS)算法与BPNN预测模型相结合的优化方法,对操动机构进行了结构优化。优化后样机的实验验证结果显示:合闸保持力提升了12.4%,合闸末平均速度降低了17.6%,分闸响应时间缩短了4.5%,验证了所提方法的有效性与优化效果。 展开更多
关键词 单稳态剩磁式操动机构 真空断路器 多目标水母优化算法 反向传播神经网络
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高压真空断路器灭弧室触头温度测算方法
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作者 成兰 《真空》 2026年第1期74-81,共8页
触头温度过高会直接降低真空断路器分合闸速度和绝缘性能,继而导致其故障率增加。故针对真空环境下触头温升监测难的问题,本文提出了高压真空断路器灭弧室触头温度测算方法。利用红外测温仪监测当前的高压真空断路器灭弧室触头温度,并... 触头温度过高会直接降低真空断路器分合闸速度和绝缘性能,继而导致其故障率增加。故针对真空环境下触头温升监测难的问题,本文提出了高压真空断路器灭弧室触头温度测算方法。利用红外测温仪监测当前的高压真空断路器灭弧室触头温度,并通过发射率和光纤布拉格光栅温度传感器监测的环境温度修正红外温度;建立触头动态温升数学模型,通过ANSYS Workbench仿真软件进行多物理场耦合求解获取触头温度分布及温升速率等结果。随着时间的增加,本研究方法的温度测算误差未出现明显增大的趋势,表明该方法在长时间温度测算过程中能够保持较高的稳定性和准确性。 展开更多
关键词 真空断路器 真空灭弧室 触头温升 非接触测温
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基于激光诱导等离子体的高压电力断路器真空度监测方法
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作者 王锦山 王佳伟 +2 位作者 张永喜 徐超 战春鸣 《真空》 2026年第1期54-60,共7页
传统真空度间接测量方式下,多种物理过程相互耦合会引入额外误差,导致真空度测量准确性较差。为此,提出一种基于激光诱导等离子体的高压电力断路器真空度监测方法。利用超快激光诱导击穿光谱技术,使高能量激光脉冲聚焦到断路器触头间隙... 传统真空度间接测量方式下,多种物理过程相互耦合会引入额外误差,导致真空度测量准确性较差。为此,提出一种基于激光诱导等离子体的高压电力断路器真空度监测方法。利用超快激光诱导击穿光谱技术,使高能量激光脉冲聚焦到断路器触头间隙区域,轰击高压电力断路器的屏蔽罩,诱导产生激光等离子体;根据等离子体的发射光谱和密度变化等提取等离子体的径向辐射率、温度和羽长特征参量;最后通过实验得到三个特征参量与真空度的关系,完成对高压电力断路器真空度的监测。结果表明:该方法可以有效提取等离子体径向辐射率、温度与羽长特征参量,准确监测断路器的真空度。 展开更多
关键词 激光诱导 等离子体 高压电力 断路器 真空度监测 Abel逆变换
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Tracking Control of Vacuum Circuit Breaker Based on a Control Law with Nonlinear Correction Function
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作者 Liyan Zhang Yongxing Wang +3 位作者 Yu Tian Enyuan Dong Yu Zhu Jiyan Zou 《CSEE Journal of Power and Energy Systems》 2025年第3期1398-1407,共10页
For phase-controlled vacuum breakers,the acting time of Permanent Magnetic Actuator(PMA)should be precise.Variation of capacitor voltage,jamming,temperature,etc.(called disturbance factors)impact dispersion of closing... For phase-controlled vacuum breakers,the acting time of Permanent Magnetic Actuator(PMA)should be precise.Variation of capacitor voltage,jamming,temperature,etc.(called disturbance factors)impact dispersion of closing time seriously.Tracking control is used to suppress this dispersion.However,PMA is a nonlinear,high-order complex system.The control process is dynamic following control.Therefore,the dispersion suppression capability of conventional controllers faces challenges.In order to solve this problem,a new technology has been put forward in this paper.By using this technology,response speed and anti-interference ability of the control system are improved.Time scatter is better suppressed.A current-displacement double closed-loop controller(CDCC)based on inverse system method is proposed.During the motion stage,the dynamic characteristics of the controller can be optimized by using the inverse systems to correct output of the automatic displacement regulator(ADR)and the automatic current regulator(ACR).A simulation system is established and performance of different control methods commonly used in phase control is compared.Based on the aforementioned theory,many experiments have been performed when disturbance factors change,such as capacitor voltage,environment temperature,and so on.Results prove that current deviation and displacement deviation can be corrected under severe conditions and closing time can be stabilized within±0.5 ms.Therefore,anti-interference ability and dynamic performance of PMA are ensured when external factors change drastically,which will increase accuracy of the phase-controlled operation and prolong the lifespan of circuit breakers. 展开更多
关键词 Non-linear controller phase controlled technology PMA vacuum circuit breaker(VCB)
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A gravity heat pipe for high voltage vacuum interrupter 被引量:5
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作者 Xiao-ling YU Zhi-yuan LIU +3 位作者 Quan-ke FENG Yi-jiang WEI Ji-mei WANG Xiang-jun ZENG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第9期1305-1312,共8页
To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two... To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two coaxis tubes: the external tube is made of oxygen-free copper and the inner tube is made of stainless steel. The bottom end of the inner stainless steel tube is connected to the external copper tube by holes. Transient and static thermal performance of the heat pipe was measured, and the thermal resistance of it was compared with that of a solid copper rod with the same dimensions. Experimental results showed that thermal resistance of the heat pipe was about 1/3 of that of the copper rod, and it decreased slightly with the rising of the input heat flux. 3D thermal simulation on a 126 kV/2000 A single break VCB was done to compare the thermal performance between the proposed gravity heat pipe and the copper rod serving as the stationary conducting rod of the vacuum interrupter. Simulation results revealed that in the heat pipe case, the maximum temperature between contacts was 67 ℃ lower than that in the copper rod case. 展开更多
关键词 Heat pipe vacuum circuit breakers (VCBs) vacuum interrupters Nominal current Thermal simulation
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Vacuum Switching Technology for Future of Power Systems 被引量:2
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作者 Xiaofei Yao Jianhua Wang +3 位作者 Shaogui Ai Zhiyuan Liu Yingsan Geng Zhiguo Hao 《Engineering》 SCIE EI CAS 2022年第6期164-177,共14页
Even though switching in vacuum is a technology with almost 100 years of history,its recent develop-ments are still changing the future of power transmission and distribution systems.First,current switch-ing in vacuum... Even though switching in vacuum is a technology with almost 100 years of history,its recent develop-ments are still changing the future of power transmission and distribution systems.First,current switch-ing in vacuum is an eco-friendly technology compared to switching in SF 6 gas,which is the strongest greenhouse gas according to the Kyoto Protocol.Vacuum,an eco-friendly natural medium,is promising for reducing the usage of SF 6 gas in current switching in transmission voltage.Second,switching in vacuum achieves faster current interruption than existing alternating current(AC)switching technolo-gies.A vacuum circuit breaker(VCB)that uses an electromagnetic repulsion actuator is able to achieve a theoretical limit of AC interruption,which can interrupt a short-circuit current in the first half-cycle of a fault current,compared to the more common three cycles for existing current switching technologies.This can thus greatly enhance the transient stability of power networks in the presence of short-circuit faults,especially for ultra-and extra-high-voltage power transmission lines.Third,based on fast vacuum switching technology,various brilliant applications emerge,which are benefiting the power systems.They include the applications in the fields of direct current(DC)circuit breakers(CBs),fault current lim-iting,power quality improvement,generator CBs,and so forth.Fast vacuum switching technology is promising for controlled switching technology in power systems because it has low variation in terms of opening and closing times.With this controlled switching,vacuum switching technology may change the“gene”of power systems,by which power switching transients will become smoother. 展开更多
关键词 Controlled switching Electromagnetic repulsion actuator Fast vacuum circuit breaker Fast vacuum switching technology vacuum interrupter
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Investigation of cathode spot characteristics in vacuum under transverse magnetic field (TMF) contacts 被引量:1
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作者 Xianhai PANG Ting WANG +2 位作者 Shixin XIU Junfei YANG Hao JING 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第8期65-73,共9页
With the continuous improvement of current levels in power systems, the demands on the breaking capacity requirements of vacuum circuit breakers are getting higher and higher. The breaking capacity of vacuum breakers ... With the continuous improvement of current levels in power systems, the demands on the breaking capacity requirements of vacuum circuit breakers are getting higher and higher. The breaking capacity of vacuum breakers is determined by cathode spots, which provide electrons and metal vapor to maintain the arc. In this paper, experiments were carried out on two kinds of transverse magnetic field(TMF) contacts in a demountable vacuum chamber, the behavior of the cathode spots was recorded by a high-speed charge-coupled device(CCD) video camera, and the characteristics of the cathode spots were analyzed through the image processing method. The phenomenon of cathode spot groups and the star-shaped pattern of the spots were both discovered in the experiment. The experimental results show that with the condition of TMF contacts the initial expansion speed of cathode spots is influenced by some parameters, such as the tested current, contact gap, the structure of the contact, the contact diameter, the number of slots, etc. In addition, the influence of the magnetic field on the formation of the cathode spot groups, the distribution, and the dynamic characteristics of the cathode spots were analyzed. It is concluded that the characteristics of the cathode spots are due to the effect of the magnetic field on the near-cathode plasma. The study of the characteristics of cathode spots in this paper would be helpful in the exploration of the physical process of vacuum arcs, and would be of guiding significance in optimizing the design of vacuum circuit breakers. 展开更多
关键词 vacuum arc transverse magnetic field (TMF) contacts cathode spots vacuum circuit breaker
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The influence of weak transverse magnetic field on plasma dissipation process in the post-arc phase in a vacuum interrupter
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作者 Qilin SHI Hao WU +4 位作者 Zhao YUAN Zhe TAO Guixia LI Wei LUO Wei JIANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第5期216-225,共10页
Transverse magnetic field(TMF)contacts and applying external TMF are often adopted for reducing the ablation of the contact surface,but TMF will also affect the breaking performance of the vacuum interrupters.In this ... Transverse magnetic field(TMF)contacts and applying external TMF are often adopted for reducing the ablation of the contact surface,but TMF will also affect the breaking performance of the vacuum interrupters.In this work,we investigated the influence of weak TMF on the expansion of the plasma in the post-arc phase with one-dimensional implicit particle-in-cell/Monte Carlo collision model,and we added an external circuit to the model to ensure the correctness of the calculation results.We simulated multiple magnetic field strengths(<30 mT),compared the plasma expansion process with the TMF strengths of 0 mT and 10 mT,and discussed the influence of metal vapor density on the insulation performance recovery of the vacuum interrupter.From the results,applying TMF with strength below 5 mT has little effect on the expansion of the plasma,and the TMF can increase the plasma density which improve the flow capacity of vacuum circuit breakers when the magnetic field above 10 mT,which is because the particles become more difficult to leave the discharge area under the force of the magnetic field.In general,we find that weak external TMF may adversely affect the breaking performance of the vacuum circuit breakers. 展开更多
关键词 vacuum circuit breakers particle-in-cell/Monte Carlo collisions transverse magnetic field PLASMA
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基于快速真空开关的直流配电组合式断路器 被引量:2
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作者 王永兴 邹积岩 +5 位作者 郭兴宇 陈忠 胡迪 杨为 茅东 柯艳国 《高压电器》 北大核心 2025年第3期63-70,共8页
以短路故障切除与提高供电可靠性为目标的直流系统控保技术是发展新型电力系统的前期攻关重点之一。基于半导体组件的混合式直流断路器做为核心部件已进入工程示范。为解决断路器的高成本以及试运行中出现的可靠性等问题,文中提出了新... 以短路故障切除与提高供电可靠性为目标的直流系统控保技术是发展新型电力系统的前期攻关重点之一。基于半导体组件的混合式直流断路器做为核心部件已进入工程示范。为解决断路器的高成本以及试运行中出现的可靠性等问题,文中提出了新的组合式直流断路器系统拓扑,把常规直流分支系统中的断路器代之以机械式开关。可大幅度降低整体成本与故障率。基于换流原理的快速直流断路器分闸速度可满足故障电流的发展,有望直接用于直流系统的控保。尝试用交流配电自动化的SCADA概念重建软件平台,创新直流配电系统拓扑,以更高的可靠性与经济性优势,为分布式多种能源智能组网给出更好的选择。 展开更多
关键词 组合式直流断路器 重合器 配电自动化 快速真空断路器
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环保型罐式多断口真空断路器气体绝缘与沿面闪络特性
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作者 程显 郭龙雨 +2 位作者 杜帅 葛国伟 鲁文龙 《高电压技术》 北大核心 2025年第6期2620-2630,共11页
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... 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CO_(2)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 CO_(2)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6.62μC/m^(2)增至21.54μC/m^(2),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。 展开更多
关键词 环保型绝缘气体 罐式断路器 雷电冲击电压 真空灭弧室 沿面闪络
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