Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors

Ultra-high-voltage transmission line is prone to severely aeolian vibration, especially for the large crossing span. However, few studies were conducted previously, as a result of high nonlinearity and complexity of the bundled conductor aeolian vibration system. This article introduces the analytic...

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Main Authors: Yi Qi, Xiaoming Rui, Kunpeng Ji, Chen Liu, Chao Zhou
Format: Article
Language:English
Published: SAGE Publishing 2019-04-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814019842706
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spelling doaj-49f30ae1645541908a6f9403350b3a062020-11-25T03:43:56ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402019-04-011110.1177/1687814019842706Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductorsYi Qi0Xiaoming Rui1Kunpeng Ji2Chen Liu3Chao Zhou4China Electric Power Research Institute, Beijing, ChinaSchool of Energy Power and Mechanical Engineering, North China Electric Power University, Beijing, ChinaChina Electric Power Research Institute, Beijing, ChinaChina Electric Power Research Institute, Beijing, ChinaSchool of Energy Power and Mechanical Engineering, North China Electric Power University, Beijing, ChinaUltra-high-voltage transmission line is prone to severely aeolian vibration, especially for the large crossing span. However, few studies were conducted previously, as a result of high nonlinearity and complexity of the bundled conductor aeolian vibration system. This article introduces the analytical models of conductor and damping devices first, to get the key factors for aeolian vibration and to direct the experimental study based on the energy balance principal. Second, the self-damping characteristics of single sub-conductor and energy dissipation power of vibration damper are tested in the laboratory. Third, two aeolian vibration schemes, the first one with vibration dampers only and the second one with both vibration dampers and damping wires, are proposed and evaluated experimentally on the single sub-conductor and then on the eight-bundle test spans. It is found that the concerned conductor has excellent damping effect at high-frequency range and that both of the two schemes show satisfactory aeolian vibration suppression result, but the second one is recommended for its good long-term service performance. This study provides useful reference for aeolian vibration suppression of ultra-high-voltage lines, to avoid fatigue failures of components induced by aeolian vibration and to improve the mechanical security of transmission lines.https://doi.org/10.1177/1687814019842706
collection DOAJ
language English
format Article
sources DOAJ
author Yi Qi
Xiaoming Rui
Kunpeng Ji
Chen Liu
Chao Zhou
spellingShingle Yi Qi
Xiaoming Rui
Kunpeng Ji
Chen Liu
Chao Zhou
Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
Advances in Mechanical Engineering
author_facet Yi Qi
Xiaoming Rui
Kunpeng Ji
Chen Liu
Chao Zhou
author_sort Yi Qi
title Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
title_short Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
title_full Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
title_fullStr Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
title_full_unstemmed Study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
title_sort study on aeolian vibration suppression schemes for large crossing span of ultra-high-voltage eight-bundle conductors
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2019-04-01
description Ultra-high-voltage transmission line is prone to severely aeolian vibration, especially for the large crossing span. However, few studies were conducted previously, as a result of high nonlinearity and complexity of the bundled conductor aeolian vibration system. This article introduces the analytical models of conductor and damping devices first, to get the key factors for aeolian vibration and to direct the experimental study based on the energy balance principal. Second, the self-damping characteristics of single sub-conductor and energy dissipation power of vibration damper are tested in the laboratory. Third, two aeolian vibration schemes, the first one with vibration dampers only and the second one with both vibration dampers and damping wires, are proposed and evaluated experimentally on the single sub-conductor and then on the eight-bundle test spans. It is found that the concerned conductor has excellent damping effect at high-frequency range and that both of the two schemes show satisfactory aeolian vibration suppression result, but the second one is recommended for its good long-term service performance. This study provides useful reference for aeolian vibration suppression of ultra-high-voltage lines, to avoid fatigue failures of components induced by aeolian vibration and to improve the mechanical security of transmission lines.
url https://doi.org/10.1177/1687814019842706
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