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PPU/2/GS  DEIF  并联和保护装置/GS 多线2

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PPU/2/GS DEIF 并联和保护装置/GS 多线2

2.1.1 高压并联电容器装置 installation of high voltage shunt capacitors
由高压并联电容器和相应的一次及二次配套设备组成,可独立运行或并联运行的装置。
2.1.2 低压并联电容器装置 installation of low voltage shunt capacitors
由低压并联电容器和相应的一次及二次配套元件组成,可独立运行或并联运行的装置。

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☀详情:PPU/2/GS DEIF 并联和保护装置/GS 多线2

2.1.1 高压并联电容器装置 installation of high voltage shunt capacitors
由高压并联电容器和相应的一次及二次配套设备组成,可独立运行或并联运行的装置。
2.1.2 低压并联电容器装置 installation of low voltage shunt capacitors
由低压并联电容器和相应的一次及二次配套元件组成,可独立运行或并联运行的装置。
2.1.3 并联电容器的成套装置 complete set of installation for shunt capacitors
由制造厂设计组装设备向用户供货的整套并联电容器装置。
2.1.4 单台电容器 capacitor unit
由一个或多个电容器元件组装于单个外壳中并有引出端子的组装体。
2.1.5 电容器组 capacitor bank
电气上连接在一起的一群单台电容器。
2.1.6 电抗率 reactance ratio
串联电抗器的感抗与并联电容器组的容抗之比,以百分数表示。
2.1.7 放电器、放电元件 discharge device、discharge component
装在电容器内部或外部的,当电容器从电源脱开后能将电容器端子间的电压在规定时间内降
低到规定值的设备或元件。
2.1.8 串联段 series section
在多台电容器连接组合中,相互并联的单台电容器群。
2.1.9 剩余电压 residual voltage
单台电容器或电容器组脱开电源后,电容器端子间或电容器组端子间残存的电压。
2.1.10 涌流 inrush transient current
电容器组投入电网时的过渡过电流
2.1.11 外熔丝 external fuses
装于单台电容器外部并与其串联连接,当电容器发生故障时用以切除该电容器的熔丝。
2.1.12 内熔丝 internal fuses
装于单台电容器内部与元件或元件组串联连接,当元件发生故障时用以切除该元件或元件组
的熔丝。
2.1.13 放电容量 discharging capacity
放电器允许连接的电容器组的容量。
2.1.14 不平衡保护 unbalance protection
利用电容器组内两个相关部分之间的电容量之差形成的电流差或电压差构成的保护。
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PPU/2/GS

2.1.1 installation of high voltage shunt capacitors
A device that is composed of a high-voltage shunt capacitor and corresponding primary and secondary auxiliary equipment and can operate independently or in parallel.
2.1.2 installation of low voltage shunt capacitors
A device consisting of a low-voltage shunt capacitor and corresponding primary and secondary components that can operate independently or in parallel.
2.1.3 complete set of installation for shunt capacitors. Complete set of installation for shunt capacitors
A complete set of shunt capacitors designed and assembled by the manufacturer to be supplied to the customer.
2.1.4 Single capacitor unit
An assembly consisting of one or more capacitor elements assembled in a single housing and having an outlet terminal.
2.1.5 capacitor bank
A group of single capacitors electrically connected together.
2.1.6 reactance ratio
The ratio of the inductive reactance of a series reactor to the capacitive reactance of a shunt capacitor bank, expressed as a percentage.
2.1.7 discharge device, discharge component, discharge component
Fitted inside or outside a capacitor to reduce the voltage between capacitor terminals for a specified time after the capacitor is removed from the power supply
A device or component that is low to a specified value.
2.1.8 series section of series section
In a combination of multiple capacitors, a single capacitor group in parallel with each other.
2.1.9 residual voltage Residual voltage
Residual voltage between capacitor terminals or between capacitor bank terminals after a single capacitor or capacitor bank is disconnected from the power supply.
2.1.10 inrush transient current
The overcurrent of a capacitor bank when it is put into the grid
2.1.11 external fuses External fuses
Installed outside a single capacitor and connected in series to remove the fuse of the capacitor in case of failure.
2.1.12 internal fuses Internal fuses
It is installed inside a single capacitor and connected in series with a component or group of components to remove the component or group in case of component failure
The fuse of
2.1.13 discharging capacity. Discharging Capacity
The capacity of the capacitor bank to which the discharger allows connection.
2.1.14 unbalance protection Unbalance protection
The protection consists of the current or voltage difference formed by the capacitance difference between the two related parts of the capacitor bank.

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