shunt capacitor

[ʃʌnt kəˈpæsɪtə]
  • 释义

    分路电容,并联电容,旁路电容;

数据更新时间:2026-04-18 13:56:11
1、

This Paper deals With the oPtimum shunt capacitor compensation of rural distribution feeders with discrete variable loads.

针对农电配电线路负荷离散分布以及负荷波动较大的特点,本文详细的讨论了应用电容器的最佳固定补偿和最佳混合补偿(一部分电容固定,一部分随负荷大小加以投切)。

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2、

Discussion of Shunt Capacitor Wattless Compensation's Optimized Algorithm on Feeder Pole

馈线杆上并联电容器无功补偿优化算法的研究

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3、

The service of 10 kV shunt capacitor bank is introduced in Langfang area and the causes of frequent action of unbalance voltage protection is analyzed. The setting principle for unbalance voltage of 10 kV shunt capacitor bank is put forward.

介绍了廊坊地区10kV并联电容器组运行情况,分析了不平衡电压保护频繁动作原因,提出了10kV并联电容器组不平衡电压保护的整定原则。

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5、

This paper analyses the internal overvoltage and the phase current of grounded wye shunt capacitor bank when there are failures in it, and gives corresponding equations.

分析了中性点接地电容器组内部故障时的内部过电压和相电流变化,并给出了相应计算公式。

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6、

Development and Application of the Compact High-Capacity shunt Capacitor

密集型大容量并联电容器的开发与应用

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7、

Analysis of the Test Condition and Using Problem of Fuse For Single Shunt Power Capacitor Protection

单台并联电容器保护用熔断器试验情况及使用问题的分析

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8、

Calculation to check over voltage and over current in design of shunt capacitor banks has to be carried out in combination with calculation of harmonic current, and should have a certain safety margin for the design.

在并联电容器组的设计中要结合谐波电流进行过电压和过电流的校核计算,并留有一定的设计裕度。

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9、

Investigation of Operation Condition for HY Shunt Capacitor Device

一次高压并联电容器装置运行状况的调查研究

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10、

Research on the Relation of Ampere-second Property of the Outer Protecting Fuse and the Outer Spring Function Force of Single Shunt Capacitor

单台并联电力电容器外保护熔断器的安秒特性与外弹簧作用力的关系研究

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11、

Development of Tank Shunt Capacitor Installation

箱式并联电容器装置研制

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12、

A New Method to Suppress the Switching Overvoltage in Shunt Capacitor Bank

限制并联电容器组过电压中的一种新方法

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14、

Intelligent zero-cross-switching shunt capacitor compensation system in electrified railway traction substation

牵引变电所智能过零投切补偿系统的研究与开发

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15、

The basic purpose of a shunt capacitor bank is to increase the local circuit voltage and or reprove the load power factor carried by the circuit.

并联电容器组的基本目的是要提高当地线路的电压,或提高引线路所带负荷的功率因数。

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16、

The impact of the static shunt capacitor on power system damping is studied.

在考虑各种动态环节的基础上,研究了并联电容器补偿对电力系统阻尼特性的影响。

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17、

Research on the Differential Voltage Protection for High Voltage Shunt Tank Capacitor

箱式高压并联电容器电压差动继电保护的探讨

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18、

A Method to Calculate Close Push Current of High Voltage Shunt Capacitor Bank

高压并联电容器组的合闸涌流计算方法

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19、

Tentative Study on the Negative Damping Caused by the Static Shunt Capacitor Compensation

并联电容补偿导致负阻尼现象成因初探

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20、

The Application of Three Phase Shunt Capacitor to Distributed Compensation of Oil Field Power Line

三相并联电容器在油田线路分散补偿中的应用

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21、

According to the conditions of ageing test within endurance test, the expected operation life of a high-voltage shunt capacitor which operates under the standard condition is estimated.

根据耐久性试验中老化试验的条件,估算了一台合格的高压并联电容器在标准和技术条件规定的条件下运行时,其预期的使用寿命。

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22、

Shunt capacitor banks are now widely applied for reactive compensation in power system as a reactive source.

并联电容器组作为一种无功电源被广泛应用于电网的无功补偿。

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23、

Application of Shunt Resonance Boosting Voltage Principle in Capacitor Voltage Transformer Error Measurement

并联谐振升压法在关口CVT误差测试中的应用

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24、

Selection of the Best Protection Scheme of Shunt Capacitor

并联电容器最佳保护方案选择

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25、

Describes the reactive power loss, the compensation principle of shunt capacitor, the compensation mode of reactive power and the calculation of compensating capacity.

阐述了电网中的无功损耗、并联电容器补偿的作用原理、无功补偿方式及补偿容量的计算。

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26、

Discussion on Reactive Power Automatic Compensation Cabinet Device of Pole-mounted High Voltage Shunt Capacitor

浅谈柱上式高压并联电容器无功自动补偿装置

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27、

Configuration of Shunt Capacitor Bank in the Substation with Heavy Load

重载变电站的电容器组配置

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28、

Research on Special Subject of GB 50227& 1995 Design Specification of Shunt Capacitor Installation

关于GB50227&1995《并联电容器装置设计规范》的专题研究

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29、

Field compensation are suitable to reactive power compensation by shunt capacitor, which are helpful to low line loss and save energy.

介绍了采用并联电容器进行无功补偿的三种方式推荐采用就地补偿,降低线路损耗,最大程度节约能源。

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