Magnetic ring device for suppressing very fast transient overvoltage in gas-insulated switchgear
A gas-insulated switch and transient overvoltage technology, which is applied in the direction of emergency protection circuit devices, circuit devices, emergency protection circuit devices, etc. for limiting overcurrent/overvoltage, can solve the problem that VFTO and equivalent inductance cannot be effectively suppressed and impedance drop, the decline of magnetic ring inhibition, etc., to avoid partial discharge, improve the electric field distribution, and enhance the effect of eddy current loss
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Embodiment 1
[0029] see figure 1 , figure 1 It is a structural schematic diagram of a magnetic ring device for suppressing ultra-fast transient overvoltage in gas insulated switchgear provided by an embodiment of the present invention. Depend on figure 1 It can be seen that the present invention mainly includes three parts: the magnetic ring string, the copper foil tape 3 and the fixed casing 2 . Among them, the magnetic ring string is sleeved on the conductive rod in the bus bar in the GIS, and the magnetic ring string is closely attached to the conductive rod. The magnetic ring string is composed of multiple open-loop anti-saturation magnetic rings 1. The central axes of the multiple open-loop anti-saturation magnetic rings 1 overlap and are closely connected in the axial direction. Adhesive is passed between two adjacent open-loop anti-saturation magnetic rings 1. 4. Closely connected; multiple open-loop anti-saturation magnetic rings 1 are provided with air gaps of the same length. ...
Embodiment 2
[0040] in the above figure 1 Based on the example shown see figure 2 , figure 2 A structural schematic diagram of another magnetic ring device for suppressing ultra-fast transient overvoltage in a gas-insulated switchgear provided by an embodiment of the present invention. Depend on figure 2 It can be seen that in the embodiment of the present invention, the air gap of the single open-loop anti-saturation magnetic ring 1 is tightly embedded with the insulating oil paper board 5 , and the insulating oil paper board 5 and the air gap are tightly connected by the adhesive 4 . The two sides of the insulating oil paperboard 5 in contact with the air gap match the air gap, and the thickness of the insulating oil paperboard 5 matches the length of the air gap.
[0041] The insulating oil paperboard 5 is a non-magnetic material, which will neither affect the spatial distribution of the magnetic field nor reduce the saturation characteristics of the open-loop anti-saturation magn...
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