6 gas-i'/> Multiphysics Simulation Study of ±800kV SF6 Gas Insulated Wall Bushing with Two Structures
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Multiphysics Simulation Study of ±800kV SF6 Gas Insulated Wall Bushing with Two Structures

机译:±800kV SF6气体绝缘壁衬套具有两种结构的多发性仿真研究

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UHVDC wall bushing is one of the key equipments of UHV DC power transmission. The ±800kV SF6 gas-insulated DC wall bushing has been applied in many China's UHVDC projects. However, ±800kV SF6 gas-insulated DC wall bushings exposed some problems during operation. In some bushings, flashover discharges occur on the legs of the three-support insulators used to support the conductive rods, and there is evidence of overheating in the butt joint part. Besides, a large amount of aluminum fluoride powder is accumulated on the surface of the conductive rods. In this paper, multiphysics simulation calculations are performed for two typical design structures of ±800kV SF6 gas insulated wall bushings. The comparison of the electric field strength under four working conditions and stress distribution under the conditions of self weight, wind load, and icing load is given. The results show that the point of maximum electric field strength occurs at the maximum curvature of the shield of the epoxy insulator. The maximum field strength point of the shield cover surface at the flange appears at the R angle. When the structure is changed from three-support to double-support, the maximum field strength of the insulator shield is increased, the maximum surface field strength of the inserts is reduced. The maximum stress of the bushing occurs at the joint between the through-wall cylinder and the hollow composite insulator, and the maximum displacement occurs at the small shield ring at the outdoor end. This paper provides guidance for the structural optimization and operation and maintenance strategies of bushing.
机译:UHVDC墙壁衬套是UHV直流电力传输的关键设备之一。 ±800kV SF 6 气体绝缘直流墙衬套已应用于许多中国的UHVDC项目。但是,±800kv sf 6 气体绝缘直流墙衬套在操作期间暴露一些问题。在一些衬套中,闪络放电在用于支撑导电杆的三个支撑绝缘体的腿上发生,并且在对接部分中存在过热的证据。此外,大量的氟化铝粉末积聚在导电杆的表面上。在本文中,对±800kV SF的两个典型设计结构进行了多体仿真计算 6 气体绝缘墙衬套。给出了在自重,风力荷载和结冰负荷条件下四个工作条件下的电场强度和应力分布的比较。结果表明,最大电场强度的点发生在环氧绝缘体屏蔽的最大曲率下。法兰处的屏蔽罩表面的最大场强点出现在R角度。当结构从三个支撑件改变为双支撑时,绝缘体屏蔽的最大场强度增加,刀片的最大表面场强度降低。衬套的最大应力发生在通壁缸和中空复合绝缘体之间的接头处,并且最大位移发生在室外端部的小屏蔽环处。本文为衬套的结构优化和维护策略提供了指导。

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