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基于不同厂家的252kV GIS扩建对接方法研究与分析

柳如见 邓东印 王祉聪 高瑞东 梁孝峰 杨远东

高压电器2025,Vol.61Issue(4):239-252,14.
高压电器2025,Vol.61Issue(4):239-252,14.DOI:10.13296/j.1001-1609.hva.2025.04.027

基于不同厂家的252kV GIS扩建对接方法研究与分析

Research and Analysis on Expansion and Butting Methods of 252 kV GIS from Different Manufacturers

柳如见 1邓东印 1王祉聪 2高瑞东 1梁孝峰 1杨远东1

作者信息

  • 1. 山东泰开高压开关有限公司,山东 泰安 271000
  • 2. 山东理工大学,山东 淄博 255000
  • 折叠

摘要

Abstract

The expansion and butting of 252 kV GIS from different manufacturers has become into a development di-rection for substation expansion.For ensuring accurate butting of equipment from different manufacturers,the com-mon types and examples of expansion and butting are summarized in this paper.The common encapsulated busbar butting type is taken as the analysis object,the design,verification and check of the expansion interface by way of such methods as design and design of structural dimension and key parameters,electrical performance analysis,me-chanical performance analysis,structural inspection in the factory and delivery test are proposed.The the calcula-tion method of interface enclosure and conductor are proposed in this paper on the basis of the dimension and key pa-rameters of previous equipment interface,and the assembly result verification method mainly based on the three-di-mensional software simulation,electrical insulation performance analysis method and mechanical performance anal-ysis method mainly based on the software analysis to form a comprehensive expansion interface design and analysis method.It is proved by the dimension inspection in the factory and delivery test result that the applicability of the ex-pansion interface design and analysis method proposed in this paper is stronger,complies with requirement of prod-uct design and has stronger engineering reference significance.

关键词

GIS/扩建/对接/结构尺寸/电气性能/机械性能/出厂试验

Key words

GIS/expansion/butting/structural dimension/electrical performance/mechanical performance/delivery test

引用本文复制引用

柳如见,邓东印,王祉聪,高瑞东,梁孝峰,杨远东..基于不同厂家的252kV GIS扩建对接方法研究与分析[J].高压电器,2025,61(4):239-252,14.

高压电器

OA北大核心

1001-1609

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