Simulation of secondary arc on 400-kV transmission system consisting of overhead line section and power cable section

Author(s):  
A. Mackow ◽  
M. Kizilcay
2006 ◽  
Vol 76 (11) ◽  
pp. 928-935 ◽  
Author(s):  
El Sayed Tag El Din ◽  
Mohamed Mamdouh Abdel Aziz ◽  
Doaa khalil Ibrahim ◽  
Mahmoud Gilany

Author(s):  
C.K. Jung ◽  
J.B. Lee ◽  
J.W. Kang ◽  
Xinheng Wang ◽  
Yong-Hua Song

Sheath current can cause sheath loss and reduce the permissible current of a power cable transmission system. High sheath current is usually caused by mixed cable burying formation, different length between sections, poor connection of the bonding leads, and connection of distribution cable onto transmission systems. This paper analyses the characteristics of sheath circulating current at various conditions and presents a useful method to reduce it in a mixed burying formation system. It can effectively reduce the current by up to 90%. The method is validated by practical measurements and simulations using ATP, and has been implemented in actual systems. In addition, a special equipment is designed to measure and analyze the sheath circulating current. It can measure and analyze nine currents at a same time.


Author(s):  
Xu Wenjia ◽  
Xiang Zutao ◽  
Ma Qiyan

Abstract Gas insulated metal-enclosed transmission line (GIL) is a substitute for overhead line, which is used for power transmitting in complicated geographical or geological environment In order to satisfying the requirements of operation in maintained state, each side of GIL needs to be installed a grounding switch. For the hybrid transmission system composed of GIL and double-circuit overhead line, the whole overhead line will be divided into incomplete transposed/non-transposed parts due to connection of GIL. When one of the grounding switches of GIL closes, it can lead to much greater induced current in each grounding switch. The induced voltage and current for hybrid transmission system will also change because of different parameters between GIL and overhead line. Calculation methods of induced voltage and current for hybrid transmission system with GIL are presented in this paper. Then, calculation conditions for hybrid transmission system are analyzed based on these evidences. Su-Tong GIL pipe gallery project is taken as an example for simulation in ATP/EMTP. Compared with traditional transmission system with overhead line, much higher performance requirements for grounding switches of Su-Tong GIL pipe gallery project are necessary, especially for induced current.


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