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220 kV bus lengthened type single-row GIS equipment

An elongated, busbar technology, applied in busbar/line layout, switchgear setting, switchgear and other directions, can solve the problems of complicated construction, reduced line operation reliability, increased cost, etc., and achieves clear and simple line wiring and wire arrangement. Concise, simple and convenient construction

Pending Publication Date: 2018-08-10
POWERCHINA FUJIAN ELECTRIC POWER SURVEY & DESIGN INST CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] 1. Adopt the cable crossing scheme: since the lines with the same name are generally arranged in adjacent intervals (see attached figure 1 And attached image 3 , such as Quanzhou I and Quanzhou II), often can only be connected to the same group of busbars, so it is necessary to connect the cables from another group of busbars in terms of layout, resulting in cable crossing. Considering the safety issues between cables, it is necessary to pull Large power distribution size, so this solution will cause problems such as increasing land use and increasing costs, and the construction is complicated, and the reliability of line operation may be reduced
[0006] 2. Two sets of busbars are arranged side by side directly, such as the technical solutions described in Chinese patents CN201120492033 and CN201610888753. The two sets of busbars are directly arranged side by side according to the equipment, which can be regarded as rotating the III / IVM busbar by 180 degrees, and then connecting with I / IIM The busbars are arranged in parallel, and the problems are: 1) Since the length of the busbars remains unchanged, the width of each interval remains unchanged, so although the length of the entire power distribution device area is reduced, the width is increased more; 2) Because the length of the busbars No change, most lines need to be arranged in double rows accordingly: in order to realize the arrangement of lines with the same name on different busbars, or the lines with the same name need to be distributed outside the two sets of busbars, and the lines with the same name should be elevated to achieve the same direction. Can refer to CN201120492033 attached figure 2 1A and 1B in and image 3 Elevated outgoing lines 9 and 10), or adopt double-layer GIS, such as the technical solution described in CN201610888753, both of which need to set up a double-layer outgoing line structure, so not only greatly changes the overall layout of the power distribution device, but also increases construction Layout workload and structure cost

Method used

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  • 220 kV bus lengthened type single-row GIS equipment
  • 220 kV bus lengthened type single-row GIS equipment
  • 220 kV bus lengthened type single-row GIS equipment

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Embodiment Construction

[0026] Best practice:

[0027] For the convenience of comparison, the conventional 220kV busbar GIS equipment layout scheme is described first, see the attached Figure 5 , combined with the attached figure 1 And attached image 3 , conventional 220kV busbar GIS equipment, the main busbar (I / IIM group or III / IVM group), busbar-side isolating switch and grounding switch DS, current transformer CT are respectively arranged from the busbar side to the outlet side, and are connected through the branch busbar The circuit breaker CB is then connected in sequence along the current transformer CT, the isolating switch and the grounding switch DS on the outgoing line side, the charged display device, the voltage transformer PT on the line side and the three-position switch through the outgoing line branch bus. The line-side voltage transformer PT is located under the outgoing branch busbar, while the main busbar is located in the space between the line-side voltage transformer PT dev...

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Abstract

The invention relates to a transformer substation combined electric appliance power distribution device, and particularly relates to a 220 kV bus lengthened type single-row GIS equipment. The 220 kV bus lengthened type single-row GIS equipment is structurally characterized in that the line-side voltage transformers of two groups of buses are upwardly arranged above a line-side outgoing branch bus.The group B of buses is arranged below the line-side voltage transformer of its own group and the line-side voltage transformer of the group A of buses. Between the current transformer of the group Bof buses and the circuit breaker of the group B of buses, a long sleeve internally provided with a branch bus is arranged to connect the current transformer with the circuit breaker. The group A of buses is arranged to be tightly attached to the circuit breaker of the group A of buses. The group A of buses and the line outgoing equipment of the group B of buses are located in the lower space of the long sleeve connected between the current transformer of the group B of buses and the circuit breaker of the group B of buses. In this way, the group A of buses is equal to the group B of buses inlength. The group A of buses and the group B of buses are parallel and are in the lower-order arrangement of the same plane. The 220 kV bus lengthened type single-row GIS equipment is simple and convenient in construction, and the overall layout of the power distribution device is not changed at all. Meanwhile, the double-layer wire outlet is not needed and the construction cost is effectively reduced. The line wiring is clear and simple, and the operation reliability is improved. Meanwhile, the operation and maintenance difficulty is reduced.

Description

technical field [0001] The invention relates to a substation combined electric power distribution device, in particular to a 220kV bus lengthened single-row arrangement GIS equipment. Background technique [0002] In the electrical field, GIS (Gas Insulated Substation) is the abbreviation of the English name of a gas-insulated substation, which refers to an equipment assembly that uses sulfur hexafluoride (SF6) gas as the insulating medium to combine multiple equipment and group busbars, namely SF6 fully enclosed combined electrical appliances. It combines the primary equipment in a substation except the transformer, including circuit breakers, disconnectors, grounding switches, voltage transformers, current transformers, lightning arresters, busbars, cable terminals, inlet and outlet bushings, etc. A whole. [0003] In the standard design, when the number of incoming and outgoing circuits is greater than or equal to 15 or required by the system, double-busbar double-secti...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02B1/20H02B13/00
CPCH02B1/20H02B13/005
Inventor 谢承超郭志彬黄明祥陈盼彭花娜王素芳陈旭海代妍妍王欣李金赐林智侃虞俊峰陈德泉林波吴浩浪林键
Owner POWERCHINA FUJIAN ELECTRIC POWER SURVEY & DESIGN INST CO LTD
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