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1000kV气体绝缘封闭装置关键出厂试验 被引量:1
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作者 王晨 施景垒 《江苏电机工程》 2016年第3期71-75,共5页
在变电工程建设中,为保证气体绝缘封闭装置(GIS)制造质量,需对GIS制造过程实行有效监造。从监造角度出发介绍了1000 kV特高压GIS关键出厂试验的试验方法以及试验过程中可能存在问题,对其他各电压等级GIS设备出厂试验监造工作也具有参考... 在变电工程建设中,为保证气体绝缘封闭装置(GIS)制造质量,需对GIS制造过程实行有效监造。从监造角度出发介绍了1000 kV特高压GIS关键出厂试验的试验方法以及试验过程中可能存在问题,对其他各电压等级GIS设备出厂试验监造工作也具有参考意义。 展开更多
关键词 气体绝缘封闭装置 出厂试验 监造 特高压
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VFTO对电力变压器绕组暂态电压分布的影响研究 被引量:5
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作者 高有华 宋佳 +2 位作者 杜翰文 高有锋 李延斌 《电气工程学报》 2018年第10期6-10,共5页
当气体绝缘金属封闭式开关装置(GIS)进行隔离开关分合闸操作时,产生的快速暂态过电压(VFTO)极有可能造成GIS内部设备及与之相连的电力设备发生绝缘事故,其中对电力变压器的危害更为严重。本文应用EMTP对GIS中隔离开关操作引起的各... 当气体绝缘金属封闭式开关装置(GIS)进行隔离开关分合闸操作时,产生的快速暂态过电压(VFTO)极有可能造成GIS内部设备及与之相连的电力设备发生绝缘事故,其中对电力变压器的危害更为严重。本文应用EMTP对GIS中隔离开关操作引起的各节点的VFTO进行了仿真计算,分析了VFTO的幅值特征,将VFTO作用在变压器绕组上,分析了变压器绕组的暂态电压分布、找出了变压器绕组的绝缘薄弱环节。 展开更多
关键词 快速暂态过电压 气体绝缘金属封闭式开关装置 暂态电压分布 EMTP 多导体传输线模型
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Pressure Rise in Electrical Installations due to Internal Arcing in CO2 as Insulating Gas
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作者 Sebastian Wetzeler Yann Cressault +1 位作者 Gerhard Johannes Pietsch Loic Hermette 《Journal of Energy and Power Engineering》 2015年第6期548-555,共8页
Internal arcs cause a rapid increase in pressure in electrical installations. The type of insulation gas has influence on pressure development. Typically SF6 is used incompact metal-clad switchgear, however, it has a ... Internal arcs cause a rapid increase in pressure in electrical installations. The type of insulation gas has influence on pressure development. Typically SF6 is used incompact metal-clad switchgear, however, it has a high global warming potential. Because of this, the replacement of SF6 by alternative gases such as CO2 is under discussion. The pressure developments in a closed vessel filled with air, SF6 and CO2 are measured and compared. During internal arcing in gas-insulated switchgear, overpressure causes a rupture of a burst plate and hot gas escapes into the surrounding room mixing with air. In order to predict the pressure development in electrical installations reliably, the portion of energy causing pressure rise, arc voltage as well as reliable gas data i.e., thermodynamic and transport properties, must be known in a wide range of pressure and temperature. These data are up to now not available for CO2/air mixtures. The thermodynamic properties are directly calculated from the number densities, internal partition functions and enthalpies of formation. The transport coefficients are deduced using the Chapman-Enskog method. Comparing measured and calculated pressure developments in a test arrangement demonstrates the quality of the calculation approach. 展开更多
关键词 Pressure calculations internal arcing carbon dioxide.
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