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Featured researches published by Dingxie Gu.


IEEE Transactions on Dielectrics and Electrical Insulation | 2014

Breakdown characteristics of long air gap with negative polarity switching impulse

Yu Wang; Xishan Wen; Lei Lan; Yunzhu An; Min Dai; Dingxie Gu; Zhijun Li

Breakdown characteristics of air gaps under negative switching impulse are complicated. To better understand the nonlinear discharge characteristics of long air gaps, the 50% breakdown characteristics of rod-rod gaps, rod-plane gaps and rod-conductor gaps, with air gap distance ranged from 1 m to 10 m, are studied thoroughly, with two waveforms of negative switching surges. Saturating characteristics have been obtained for the above three typical gaps. For air gaps exceed 4 m, the 50% breakdown voltage appears to be lower for rod-plane gaps than that for rod-rod gaps, while the average breakdown electric field decreases with the length of air gaps. Gap factors under negative impulses tend to level off with gap spacing. Furthermore, new knowledge is obtained indicating that, the 50% breakdown voltage for rod-conductor gaps may be lower with conductor grounded than that with conductor ungrounded. Finally, it also indicates that the wave front of the applied voltage has great influence on the breakdown time of rod-rod air gaps.


international conference on high voltage engineering and application | 2010

Study on grounding design for lightning of tubular composite material towers in 110kV overhead transmission line

Zhijun Li; Min Dai; Dingxie Gu; Shi-cong Deng; Han-ming Li; Qian-hu Wei

The composite tower body insulation may be used to enhance the phase-to-ground and phase-to-phase insulation strength for transmission line towers so as to increase the transmission line lightning protection capacities. This study project is carried out to achieve this purpose, by putting forward one new type of lightning ground down lead modes, that is, the ground down lead suspended in the internal side. As shown in the test and calculation evaluation results of the lightning performances, the lightning impulse insulation strength and the lightning trip rate of the composite towers by utilizing the design the ground down lead suspended in the internal side may be respectively increased by 28% and decreased by 54% than those by utilizing the ground down lead mode along the tower, respectively.


Archive | 2010

Method for simulating GIS transformer substation to produce very fast transient overvoltage (VFTO) and test circuit

Weijiang Chen; Min Dai; Dingxie Gu; Jiming Lin; Junhui Wu; Peihong Zhou; Guoqiang Chen; Zhenqiang Li; Bin Han; Huiwen He; Wenyi Li


Archive | 2010

Vertically grounding down-leading method for external side of composite material tower and tower thereof

Zhijun Li; Dingxie Gu; Peihong Zhou; Min Dai; Xiong Wu; Kai Liu; Ting Liu; Feng Huo


Archive | 2008

Large cross line total lighting strike tripping rate emulated computation method

Min Dai; Ying Lou; Zhenqiang Li; Zhijun Li; Peihong Zhou; Dingxie Gu; Muhong Xiu


Archive | 2009

Training system for ultra-high voltage transmission system overvoltage and insulation coordination technology

Zhijun Li; Dingxie Gu; Zhenqiang Li; Min Dai; Peihong Zhou; Ying Lou; Huiwen He; Muhong Xiu


Archive | 2011

Central vertical grounding leading-down method for composite pole tower and pole tower thereof

Zhusen Sun; Qiang Zhang; Minghua Li; Zhijun Li; Ting Liu; Feng Huo; Min Dai; Kai Liu; Xiong Wu; Dingxie Gu; Peihong Zhou; Ying Lou; Zhenqiang Li; Huiwen He


Archive | 2012

Method for limiting secondary arc current for untransposed transmission line with extra-high voltage

Zhenqiang Li; Dingxie Gu; Min Dai; Ying Lou; Huiwen He; Zhijun Li; Mian Fan; Lei Wang; Lei Wan


Archive | 2011

Composite tower with inside vertical ground down lead

Zhijun Li; Hanming Li; Ting Liu; Qianhu Wei; Feng Huo; Ming Zhan; Min Dai; Shicong Deng; Kai Liu; Ning Cao; Xiong Wu; Yuhua Zhang; Dingxie Gu; Weicai Zhou; Peihong Zhou; Zhenqiang Li; Ying Lou; Huiwen He


Archive | 2010

Insulator chain lightning withstand level emulation method

Dingxie Gu; Peihong Zhou; Zhenqiang Li; Min Dai; Zhijun Li; Muhong Xiu; Ying Lou

Collaboration


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Min Dai

Electric Power Research Institute

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Zhijun Li

Electric Power Research Institute

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Peihong Zhou

Electric Power Research Institute

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Zhenqiang Li

Electric Power Research Institute

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Ying Lou

Electric Power Research Institute

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Huiwen He

Electric Power Research Institute

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Feng Huo

Electric Power Research Institute

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Kai Liu

Electric Power Research Institute

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Ting Liu

Electric Power Research Institute

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Xiong Wu

Electric Power Research Institute

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