非sf6开关气体的比较测试程序框架

Christian M. Franck, Joseph Engelbrecht, M. Muratovic, Paweł Pietrzak, P. Simka, Current Zero Club
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引用次数: 5

摘要

摘要近年来,无sf6气体绝缘变电站(GIS)的发展取得了重大成就。与此同时,公用事业公司对安装不含sf6的地理信息系统的兴趣稳步增加,对新变电站或升级的招标也在稳步增加,其中经常包括替代技术。SF6的出色性能被所有供应商和用户明确接受,因此社区开始习惯于单一技术解决方案。替代气体混合物不再是这种情况,有多种技术解决方案可用。然而,从目前的文献来看,不可能对不同的替代气体开关设备(即断路器和隔离器)进行全面和比较的评估。因此,苏黎世联邦理工学院高压实验室开始了基础实验的调查和测量,以便对与开关相关的替代气体混合物的特性进行无偏比较。这些研究的两个主要目的是定义一套测量方法,允许对不同气体混合物的开关性能进行估计和比较,独立于特定的中断喷嘴几何形状,驱动系统,静电设计和其他设计特定功能,并执行(部分)这些测量,将纯SF6与空气,纯CO2, CO2/O2混合物进行比较,以及目前制造商建议用于SF6替代的其他特定气体混合物。本文将详细介绍测量定义背后的基本分析,并介绍所选择的测试设备的设计原则以及推导出的测试电流和诊断方法。测试结果本身将不提供,而是它们将成为未来单独出版物的主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Test Program Framework for Non-Sf6 Switching Gases
Abstract In recent years, significant achievements have been made with respect to the development of SF6-free gas insulated substations (GIS). In parallel, the interest in installing SF6-free GIS by utilities increased steadily and tenders for new substations or upgrades, which regularly also include alternative technologies. The excellent performance of SF6 was unequivocally accepted by all vendors and users so that the community became used to single technology solutions. This is no longer the case with alternative gas mixtures, and multiple technological solutions are available. However, from the present body of literature it is not possible to make a full and comparative evaluation of different alternative gas switchgear, i.e. circuit-breakers and disconnectors. Thus, the High-Voltage Laboratory of ETH Zürich started investigations and measurements of basic experiments that allow an unbiased comparison of properties of alternative gas mixtures relevant for switching. The two main purposes of these investigations are to define a set of measurements that allow an estimation and comparison of switching performance with different gas mixtures, independent of a specific interruption nozzle geometry, drive system, electrostatic design, and other design specific features, and to perform (some of) these measurements comparing pure SF6, with air, pure CO2, CO2/O2 mixture, and further specific gas mixtures that are currently proposed by manufacturers for SF6 replacement. The basic analysis behind the definition of measurements will be given in detail and the design principles of the chosen test devices and the derived test currents and diagnostics will be introduced. Test results themselves will not be given, rather they will be the subject of separate future publications.
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