DocumentCode :
1610781
Title :
Dynamic responses analysis and disaster prevention of transmission line under strong wind
Author :
Yang, Jingbo ; Yang, Fengli ; Li, Qinghua ; Fu, Dongjie ; Zhang, Zifu
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
fYear :
2010
Firstpage :
1
Lastpage :
6
Abstract :
Dynamic analysis of a typical transmission line section under strong wind was carried out. Firstly, according to the design conditions of the typical transmission line section, a three dimensional finite element analysis model of cup tower-stay frame tower-conductor-ground wire-insulator system was established in ANSYS. The initial tension force of the conductors was applied by the cooling method. Before the wind-induced vibration analysis, the form-finding analysis of conductors under self weight was carried out. Secondly, time history of the impulsive wind velocity was generated by spectral representation method. Time history of the impulsive wind velocity can be obtained by Fourier transformation in MATLAB program. The average wind pressure is applied to the tower line system by static method, and the impulsive wind pressure is applied by transient dynamic method. Thirdly, for the wind load case of design velocity, the wind-induced responses of the typical transmission line section were analyzed. Effect of the structural damping was considered by Rayleigh damping coefficients. Nonlinear transient analysis was employed for the wind-induced dynamic analysis of transmission line system. Under different wind velocities and directions, some wind-induced responses were obtained, which includes the tension forces of the conductors and the ground wires, axial forces of the towers, and the tension forces of the stray frame tower. Lastly, based on the analyzed results, the prewarning wind velocity for the typical transmission line section was determined. Some strengthen suggestions for the tower design in the strong wind zone was presented.
Keywords :
Fourier transforms; cooling; damping; disasters; dynamic response; finite element analysis; insulators; poles and towers; power transmission lines; transient analysis; wind; Fourier transformation; Rayleigh damping coefficients; cooling method; disaster prevention; dynamic responses analysis; finite element analysis; ground wire insulator system; nonlinear transient analysis; spectral representation method; structural damping; tower conductor; tower line system; transient dynamic method; transmission line; wind induced vibration analysis; Force; Leg; MATLAB; Mathematical model; Poles and towers; Vibrations; Wire; preventive measures; strong wind; transmission line; wind-induced dynamic response;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power System Technology (POWERCON), 2010 International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4244-5938-4
Type :
conf
DOI :
10.1109/POWERCON.2010.5666417
Filename :
5666417
Link To Document :
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