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1)  overhand lines
空配电线路
1.
The practicability on the construction of overhand lines delivering with 20 KV has been analyzed.
针对20 KV架空配电线路建设的可行性进行分析,根据国内目前配电线路现状,结合以往的设计和运行经验首次提出了20 KV架空配电线路建设中相对合理的线间距离。
2)  distribution overhead line
配电架空线路
3)  overhead distribution lines
架空配电线路
1.
The research on the overhead distribution lines is mainly focused on direct lightning for long time,and the research on induced lightning is rather less.
空配电线路大都裸露在空中,极易遭受雷击产生雷电过电压,从而造成供电中断,影响生产和生活。
4)  Distribution Line
配电线路
1.
Brief analysis the reasons caused loss and its countermeasures in forest area 10kV distribution line;
浅谈林区10 kV配电线路损失的原因及对策
2.
Study on line arrester applied to improve the lightning performance of 10 kV distribution lines
应用线路避雷器提高10kV配电线路防雷性能的研究
3.
In order to change non-normative status of setting of interim electro-equipment in construction local, this paper expounds how to set interim electro-equipment in construction local from aspects of construction design, laying distribution line, three class power distribution and two class leakage protection, earthing and lightning protection, distribution box, use and maintenance and so on.
为改变施工现场用电不规范的状况 ,从临时用电施工组织设计 ,配电线路的敷设 ,采用三级配电、二级漏电保护 ,接地与防雷 ,配电屏、配电箱、开关箱 ,使用与维护等方面阐述了施工现场临时用电的合理设
5)  distribution lines
配电线路
1.
The test & analysis of adopting reactive automatic compensating box to reduce distribution lines loss;
配电线路采用无功自动补偿柜降低线路损耗的试验及分析
2.
Frequency domain analysis for line-to-ground fault location in frequency-dependent distribution lines;
变参数配电线路接地故障定位的频域分析
3.
In view of the problem that lighting flashover,lightning-caused line breaking,pollution flashover and the other flashover accidents were liable to occur on 10 kV distribution lines,The insulated tower top and cross arm which can prevent the lightning flashover and pollution flashover of distribution lines are experimentally researched.
为了提高绝缘水平,增大放电路径,有效防止雷击跳闸及污闪事故,解决10 kV配电线路易发生雷击闪络或雷击断线、污闪及其他原因闪络的问题,试验研究了配电线路防雷击、污闪的绝缘塔头和横担,并对针式绝缘子与绝缘横担的组合绝缘体进行了相关的电气和机械性能试验。
6)  distribution feeder
配电线路
1.
In order to optimize the placement and capacity of shunt capacitor on feeder,and give the guidance to engineering practice of installation of reactive power device in distribution network,this paper studces the tow-layer optimization model used to determine the position and the capacity of reactive power compensation device on distribution feeder is studied in this paper.
为解决配电线路上并联电容器优化配置问题,指导配电网无功补偿设备安装的工程实践,研究了确定并联电容器位置与容量的两层优化数学模型。
2.
This paper proposes a new non-communication protection scheme for distribution feeders separated by single circuit breakers.
针对单断路器分断的配电线路结构提出了一种新型无通道保护,该保护连同它的断路器既能开断电源端故障亦能开断无电源端故障。
3.
Based on the particular characteristic of 10 kV distribution feeders, the technique of sensitivity analysis is used in this paper for the computation of reactive compensation.
针对电力系统 10kV配电线路的具体特点 ,采用灵敏度分析技术进行无功补偿计算 。
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