Application Study of Viscoelastic Damping Material for the Anti-Galloping of Overhead Transmission Lines

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Abstract:

Based on the galloping mechanism of transmission line, it is determined to use viscoelastic damping material and energy effects of TMD to suppress galloping. The dynamic mechanical properties of viscoelastic damping material is studied, with the operating environment of the transmission lines, high-and-low-temperature physics experiment is carried out, while the experimental study on mechanical properties is carried out with the developed viscoelastic damping elements. It is showed that the viscoelastic material meets the anti-galloping device performance requirements for materials, it has a good energy consumption effect, suitable for application to anti-galloping of transmission lines.

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Periodical:

Advanced Materials Research (Volumes 884-885)

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269-272

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Online since:

January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] JIANG Xing-liang, SUN Cai-xin and WANG Shao hua: Study status of conductor galloping on transmission line. High Voltage Engineering. Vol. 31(2005), pp.11-14.

Google Scholar

[2] Guo Yinglong, Li Guoxing and You Chuanyong: Transmission line galloping (China electric power press, Beijing 2003), in Chinese.

Google Scholar

[3] M. L. Lu, N. Popplewell, A. H. Shah, and J. K. Chan: Hybrid Nutation Damper for Controlling Galloping Power Lines. IEEE Tranctions on Power Delivery, Vol. 22(2007), pp.450-456.

DOI: 10.1109/tpwrd.2006.876653

Google Scholar

[4] A.J. Carreira: Controlling Conductor Motion with Interphase Spacers in Regions of Contamination. IEEE Electrical Insulation Magazine, Vol. 24(2008), pp.35-42.

DOI: 10.1109/mei.2008.4665349

Google Scholar

[5] M. D. Rowbottom, B. Sc., Ph.D., C. Eng, F.I.M.A., M.I.E.E., and J.G. Allnutt, B. Sc., D. Phil.: Mechanical dampers for the control of full span galloping oscillations. IEE PROC., Vol. 129(1982), pp.123-135.

DOI: 10.1049/ip-c.1982.0019

Google Scholar

[6] Lilien, J.L. and A. Vinogradov: Full-scale Teats of TDD Antigalloping Device (Torsional Damper and Detuner). IEEE Transactions on Power Delivery, Vol. 17(2002), pp.638-643.

DOI: 10.1109/61.997952

Google Scholar

[7] Xu Zhaodong, Ma Lewei: Structural dynamics. (Science press, Beijing 2007), in Chinese.

Google Scholar

[8] Zhou Yun: Design of viscoelastic damping structure. (Wuhan University of Technology Press, Wuhan 2006), in Chinese.

Google Scholar