Wake-induced oscillation behaviour of twin bundle conductor transmission lines

Publication Date:
2018-06-14
Publisher:
Royal Society
Electronic ISSN:
2054-5703
Topics:
Natural Sciences in General
Keywords:
electrical engineering
Published by:
_version_ 1836398970601996288
autor Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
beschreibung A numerical method to simulate air flow around a bundle conductor line by means of the FLUENT software is presented and verified by a wind tunnel test for aerodynamic characteristics of a twin bundle conductor line. The lift and drag coefficients of the leeward sub-conductor of a twin bundle conductor varying with its relative position in the wake zone to the windward one under different wind velocities are numerically determined by the presented method. A user-defined subroutine of ABAQUS software is developed to apply the aerodynamic loads on each sub-conductor and the electromagnetic force between sub-conductors. The numerical simulation method for wake-induced oscillation of a bundle conductor line is proposed. By means of the numerical method, wake-induced oscillation processes of twin bundle conductor transmission lines under different parameters, including current intensity, spacer layout, span length and wind velocity, are numerically simulated. Moreover, the effects of those parameters on the oscillation characteristics of the lines, such as vibration mode, frequency, amplitude and motion trace, are discussed. The results obtained provide a fundamental basis for the understanding of wake-induced oscillation behaviour of twin bundle conductor transmission lines and the development of control technique for wake-induced oscillation.
citation_standardnr 6283012
datenlieferant ipn_articles
feed_id 220702
feed_publisher Royal Society
feed_publisher_url http://royalsocietypublishing.org/
insertion_date 2018-06-14
journaleissn 2054-5703
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Royal Society
quelle Royal Society Open Science
relation http://rsos.royalsocietypublishing.org/cgi/content/short/5/6/180011?rss=1
schlagwort electrical engineering
search_space articles
shingle_author_1 Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
shingle_author_2 Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
shingle_author_3 Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
shingle_author_4 Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
shingle_catch_all_1 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
electrical engineering
A numerical method to simulate air flow around a bundle conductor line by means of the FLUENT software is presented and verified by a wind tunnel test for aerodynamic characteristics of a twin bundle conductor line. The lift and drag coefficients of the leeward sub-conductor of a twin bundle conductor varying with its relative position in the wake zone to the windward one under different wind velocities are numerically determined by the presented method. A user-defined subroutine of ABAQUS software is developed to apply the aerodynamic loads on each sub-conductor and the electromagnetic force between sub-conductors. The numerical simulation method for wake-induced oscillation of a bundle conductor line is proposed. By means of the numerical method, wake-induced oscillation processes of twin bundle conductor transmission lines under different parameters, including current intensity, spacer layout, span length and wind velocity, are numerically simulated. Moreover, the effects of those parameters on the oscillation characteristics of the lines, such as vibration mode, frequency, amplitude and motion trace, are discussed. The results obtained provide a fundamental basis for the understanding of wake-induced oscillation behaviour of twin bundle conductor transmission lines and the development of control technique for wake-induced oscillation.
Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
Royal Society
2054-5703
20545703
shingle_catch_all_2 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
electrical engineering
A numerical method to simulate air flow around a bundle conductor line by means of the FLUENT software is presented and verified by a wind tunnel test for aerodynamic characteristics of a twin bundle conductor line. The lift and drag coefficients of the leeward sub-conductor of a twin bundle conductor varying with its relative position in the wake zone to the windward one under different wind velocities are numerically determined by the presented method. A user-defined subroutine of ABAQUS software is developed to apply the aerodynamic loads on each sub-conductor and the electromagnetic force between sub-conductors. The numerical simulation method for wake-induced oscillation of a bundle conductor line is proposed. By means of the numerical method, wake-induced oscillation processes of twin bundle conductor transmission lines under different parameters, including current intensity, spacer layout, span length and wind velocity, are numerically simulated. Moreover, the effects of those parameters on the oscillation characteristics of the lines, such as vibration mode, frequency, amplitude and motion trace, are discussed. The results obtained provide a fundamental basis for the understanding of wake-induced oscillation behaviour of twin bundle conductor transmission lines and the development of control technique for wake-induced oscillation.
Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
Royal Society
2054-5703
20545703
shingle_catch_all_3 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
electrical engineering
A numerical method to simulate air flow around a bundle conductor line by means of the FLUENT software is presented and verified by a wind tunnel test for aerodynamic characteristics of a twin bundle conductor line. The lift and drag coefficients of the leeward sub-conductor of a twin bundle conductor varying with its relative position in the wake zone to the windward one under different wind velocities are numerically determined by the presented method. A user-defined subroutine of ABAQUS software is developed to apply the aerodynamic loads on each sub-conductor and the electromagnetic force between sub-conductors. The numerical simulation method for wake-induced oscillation of a bundle conductor line is proposed. By means of the numerical method, wake-induced oscillation processes of twin bundle conductor transmission lines under different parameters, including current intensity, spacer layout, span length and wind velocity, are numerically simulated. Moreover, the effects of those parameters on the oscillation characteristics of the lines, such as vibration mode, frequency, amplitude and motion trace, are discussed. The results obtained provide a fundamental basis for the understanding of wake-induced oscillation behaviour of twin bundle conductor transmission lines and the development of control technique for wake-induced oscillation.
Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
Royal Society
2054-5703
20545703
shingle_catch_all_4 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
electrical engineering
A numerical method to simulate air flow around a bundle conductor line by means of the FLUENT software is presented and verified by a wind tunnel test for aerodynamic characteristics of a twin bundle conductor line. The lift and drag coefficients of the leeward sub-conductor of a twin bundle conductor varying with its relative position in the wake zone to the windward one under different wind velocities are numerically determined by the presented method. A user-defined subroutine of ABAQUS software is developed to apply the aerodynamic loads on each sub-conductor and the electromagnetic force between sub-conductors. The numerical simulation method for wake-induced oscillation of a bundle conductor line is proposed. By means of the numerical method, wake-induced oscillation processes of twin bundle conductor transmission lines under different parameters, including current intensity, spacer layout, span length and wind velocity, are numerically simulated. Moreover, the effects of those parameters on the oscillation characteristics of the lines, such as vibration mode, frequency, amplitude and motion trace, are discussed. The results obtained provide a fundamental basis for the understanding of wake-induced oscillation behaviour of twin bundle conductor transmission lines and the development of control technique for wake-induced oscillation.
Wu, C., Yan, B., Huang, G., Zhang, B., Lv, Z., Li, Q.
Royal Society
2054-5703
20545703
shingle_title_1 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
shingle_title_2 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
shingle_title_3 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
shingle_title_4 Wake-induced oscillation behaviour of twin bundle conductor transmission lines
timestamp 2025-06-30T23:35:32.884Z
titel Wake-induced oscillation behaviour of twin bundle conductor transmission lines
titel_suche Wake-induced oscillation behaviour of twin bundle conductor transmission lines
topic TA-TD
uid ipn_articles_6283012