针对一起330 k V电容式电压互感器(CVT)运行中二次电压异常的故障,采用现场试验检查和返厂解体的查找手段,查明造成CVT二次电压异常的原因是由于电磁单元一次部分保护用避雷器绝缘下降所致。结合设备历史运行数据,对CVT电容器和电磁单...针对一起330 k V电容式电压互感器(CVT)运行中二次电压异常的故障,采用现场试验检查和返厂解体的查找手段,查明造成CVT二次电压异常的原因是由于电磁单元一次部分保护用避雷器绝缘下降所致。结合设备历史运行数据,对CVT电容器和电磁单元常规检查和试验结果进行分析比对,给出了判断方法和结论,提出CVT二次电压异常的排查方法和流程,给出了相关的建议,并对加强在网运行CVT的状态监测提出了具体措施。展开更多
The voltage uprating of existing overhead lines is an interesting solution for increasing the transmission of electricity, especially in areas where it is difficult to build new lines. If a line is uprated with minor ...The voltage uprating of existing overhead lines is an interesting solution for increasing the transmission of electricity, especially in areas where it is difficult to build new lines. If a line is uprated with minor changes of its design and without improvement of the grounding electrodes of towers, its lightning performance remains unchanged. The consequence is that the uprated line will have a lightning flashover rate very high compared to an overhead line of same nominal voltage but of standard design. One attractive solution to solve this problem is to use line arresters. The goal of this paper is to study the use of line arresters to achieve a satisfactory lightning performance of an overhead line uprated from 225 kV to 400 kV without major design modifications. In order to compare different strategies of line arrester installation the flashover rate is calculated based on a software able to launch automatically EMTP-RV. The software named LIPS has been developed under the cover of a partnership between Hydro-Quebec, RTE and EDF.展开更多
文摘针对一起330 k V电容式电压互感器(CVT)运行中二次电压异常的故障,采用现场试验检查和返厂解体的查找手段,查明造成CVT二次电压异常的原因是由于电磁单元一次部分保护用避雷器绝缘下降所致。结合设备历史运行数据,对CVT电容器和电磁单元常规检查和试验结果进行分析比对,给出了判断方法和结论,提出CVT二次电压异常的排查方法和流程,给出了相关的建议,并对加强在网运行CVT的状态监测提出了具体措施。
文摘The voltage uprating of existing overhead lines is an interesting solution for increasing the transmission of electricity, especially in areas where it is difficult to build new lines. If a line is uprated with minor changes of its design and without improvement of the grounding electrodes of towers, its lightning performance remains unchanged. The consequence is that the uprated line will have a lightning flashover rate very high compared to an overhead line of same nominal voltage but of standard design. One attractive solution to solve this problem is to use line arresters. The goal of this paper is to study the use of line arresters to achieve a satisfactory lightning performance of an overhead line uprated from 225 kV to 400 kV without major design modifications. In order to compare different strategies of line arrester installation the flashover rate is calculated based on a software able to launch automatically EMTP-RV. The software named LIPS has been developed under the cover of a partnership between Hydro-Quebec, RTE and EDF.