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Arrangement Strategy of Particle Trap In DC GIL

机译:DC GIL粒子陷阱的安排策略

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摘要

Particle trap as a mean to suppress the movement of particles by constructing local low field regions, is a common particle suppression measure in gas insulation systems. In this paper, researches on DC metal traps have been carried out. A 110 kV DC gas insulated line(GIL) experimental platform has been set up and a corresponding 3D simulation model have been constructed. The trapping performance of traps of different widths and thicknesses has been studied through simulations and experiments. The results show that the trapping probability of metal particles increases and peak with the width of the trap decreasing, while it increases and tens to be stable as the thickness of the particle trap increases. The distribution of the metal particles near the insulator in the DC GIL is studied. Taking particle trapping time as a parameter and considering the particle drop point position, trap layout strategy can be designed, which can provide reference for the design of particle traps in the actual project.
机译:作为通过构造局部低场区域来抑制颗粒运动的颗粒阱是气体绝缘系统中的常见颗粒抑制措施。在本文中,已经进行了对DC金属陷阱的研究。已经建立了110kV DC气体绝缘线(GIL)实验平台,并建造了相应的3D仿真模型。通过模拟和实验研究了不同宽度和厚度陷阱的捕获性能。结果表明,金属颗粒的捕获概率随着陷阱的宽度而增加和峰值,而随着颗粒阱的厚度增加,它增加和数度稳定。研究了DC GIL中绝缘体附近的金属颗粒的分布。将粒子捕获时间作为参数,考虑到粒子滴点位置,可以设计陷阱布局策略,这可以为实际项目中的粒子陷阱设计提供参考。

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