35kv
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The Measurement of Line to Ground Capacity of 10 & 35kV Power System
10&35kV系统各相电容的测量
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Testing Study of the Main Insulating Structures in 10 、 35kV Power Transformer
10、35kV级变压器主绝缘结构试验研究
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Comprehensive Live - wire Maintenance of 35kV ~ 220 kV Transmission Lines
35kV~220kV送电线路的带电综合性检修
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Optimal Reactive Power Compensation for the 6 ~ 35kV Substation
6~35kV变电站的最佳无功补偿
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Artificial Pollution and Dew Test for 10 、 35kV PT
10、35kV互感器凝露及污秽试验
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The analysis of 35kV / 2kA HTS cable system site installation , trial and operation fault
35kV/2kA高温超导电缆系统现场安装、调试和运行缺陷分析
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The complex line breaking and grounding fault is one type of fault that may frequently occur in the 6 ~ 35kV distribution system .
在6~35kV的中低压配电系统中,单相断线加接地的复杂故障情况时有发生。
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Study on computerized relay protection and integrated automation system of the 35kV / 10kV electric power substation based on PC industrial controlling computer
基于PC工控机的35kV/10kV变电站微机保护及自动化系统
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The ideal dark ⅰ ⅴ characteristics of fabricated device was observed . The hold off field strength reaches 35kV / cm .
器件具有理想的暗态伏安特性,绝缘强度达35kV/cm。
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In China , neutral isolated and Peterson coil grounded system are widely used in 6 kV ~ 35kV medium voltage distribution networks .
我国大多数6~35kV中压配电网均采用中性点不接地或经消弧线圈接地的运行方式。
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Termination r & d for 35kv / 2ka high-t_c superconducting cable
35kV/2kA高温超导电力电缆终端
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In our country , the non-effectively earthed neutral mode used mostly in 6 ~ 35kV medium voltage distribution network adopts the neutral point unearthed mode or neutral point earthed via Peterson coil .
我国6~35kV配电网中性点主要采用非有效接地方式(又称小电流接地方式),即中性点不接地和经消弧线圈接地,少数经高电阻接地。
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Single-phase ground faults are the most common faults in power system . In order to improve the reliability of power supply , most 6 ~ 35kV distribution networks in China have been running in non-effective grounded mode .
单相接地故障是电力系统中最为常见的故障类型,为了提高供电的可靠性,我国6-35kV配电网大多采用小电流接地方式运行。
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Millions of10KV current and voltage transformers that the company produced have been used in hundreds of220KV , 110KV , 35KV transformer substations , switch stations and the National Electricity Grid .
公司生产的10KV电流、电压互感器至今在数百个220KV、110KV、35KV变电站、开关站、及国家电网工程中使用了上百万台。
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In 6 ~ 35kV distribution networks , the resonance grounding system with automatic track compensated peterson coil is being applied more and more widely . The characteristics of voltage and current in single phase to ground faulty system are analyzed .
在6~35kV供配电系统,中性点经过自动跟踪补偿的消弧线圈接地的谐振接地方式得到了越来越为广泛的应用。
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In order to optimize the structure of HTS cable conductor , the current distribution in the HTS cable conductor must be measured in the development of a 30m , three phases 35KV / 2KA HTS AC cable .
在完成30m,三相,35kV/2kA高温超导(HTS)交流电缆系统的研制过程中,为了优化电缆导体结构设计,需要测量导体层电流分布。
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The paper presents a computer drawing method , programming with the Visual Basic language , for the optimal reactive power compensation time and size determination of 6 ~ 35kV substations . This is a new way for the reactive power optimization of 6 ~ 35kV substations .
通过计算机作图法来确定6~35kV变电站的最佳无功补偿时间和最佳补偿容量,并利用VISUALBASIC语言编写了作图求解软件,为电力系统6~35kV变电站无功优化作出了新的尝试。
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6 ~ 35kV electricity net controlling system has been developed under fast speed recently , the current in most single-phase grounding systems will exceed 10A , or even 50A . It is not fitted if only using the way of neutral contact non-grounding simply .
近年来,我国6~35kV配电网系统发展迅速,电网单相接地时的电流大多都超过10A,许多甚至超过50A,简单地采用中性点不接地方式显然不合时宜。