Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence

This paper is concerned with the investigation of the Strouhal number (St) for a stationary iced cable model of cable-supported bridges using wind tunnel tests with respect to three principal angles of wind attack. The investigations were carried out in the Climatic Wind Tunnel Laboratory of the Cze...

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Main Authors: Gόrski Piotr, Tatara Marcin, Pospíšil Stanislav, Kuznetsov Sergej
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201710700080
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spelling doaj-ffdf9e7b2ff64227bbf91106c8ec94042021-03-02T09:27:52ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011070008010.1051/matecconf/201710700080matecconf_dyn2017_00080Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulenceGόrski Piotr0Tatara Marcin1Pospíšil Stanislav2Kuznetsov Sergej3Opole University of Technology, Faculty of Civil Engineering and Architecture, Department of Roads and BridgesOpole University of Technology, Faculty of Civil Engineering and Architecture, Department of Roads and BridgesAcademy of Sciences of the Czech Republic, Institute of Theoretical and Applied MechanicsAcademy of Sciences of the Czech Republic, Institute of Theoretical and Applied MechanicsThis paper is concerned with the investigation of the Strouhal number (St) for a stationary iced cable model of cable-supported bridges using wind tunnel tests with respect to three principal angles of wind attack. The investigations were carried out in the Climatic Wind Tunnel Laboratory of the Czech Academy of Sciences in Telč. The St values were determined at the flow turbulence intensity of the order of 12%, within the range of the Reynolds number from 2.4·104 to 12.9·104, based on the dominant vortex shedding frequencies measured in the wake of the model. The obtained experimental St values of the iced cable of a cable-supported bridge will allow to determine the critical wind velocity as well as will be helpful for prediction of the cable response due to the vortex excitation phenomenon at moderate flow turbulence condition.https://doi.org/10.1051/matecconf/201710700080
collection DOAJ
language English
format Article
sources DOAJ
author Gόrski Piotr
Tatara Marcin
Pospíšil Stanislav
Kuznetsov Sergej
spellingShingle Gόrski Piotr
Tatara Marcin
Pospíšil Stanislav
Kuznetsov Sergej
Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
MATEC Web of Conferences
author_facet Gόrski Piotr
Tatara Marcin
Pospíšil Stanislav
Kuznetsov Sergej
author_sort Gόrski Piotr
title Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
title_short Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
title_full Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
title_fullStr Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
title_full_unstemmed Investigation of Strouhal number of ice-accreted bridge cables at moderate flow turbulence
title_sort investigation of strouhal number of ice-accreted bridge cables at moderate flow turbulence
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description This paper is concerned with the investigation of the Strouhal number (St) for a stationary iced cable model of cable-supported bridges using wind tunnel tests with respect to three principal angles of wind attack. The investigations were carried out in the Climatic Wind Tunnel Laboratory of the Czech Academy of Sciences in Telč. The St values were determined at the flow turbulence intensity of the order of 12%, within the range of the Reynolds number from 2.4·104 to 12.9·104, based on the dominant vortex shedding frequencies measured in the wake of the model. The obtained experimental St values of the iced cable of a cable-supported bridge will allow to determine the critical wind velocity as well as will be helpful for prediction of the cable response due to the vortex excitation phenomenon at moderate flow turbulence condition.
url https://doi.org/10.1051/matecconf/201710700080
work_keys_str_mv AT gorskipiotr investigationofstrouhalnumberoficeaccretedbridgecablesatmoderateflowturbulence
AT tataramarcin investigationofstrouhalnumberoficeaccretedbridgecablesatmoderateflowturbulence
AT pospisilstanislav investigationofstrouhalnumberoficeaccretedbridgecablesatmoderateflowturbulence
AT kuznetsovsergej investigationofstrouhalnumberoficeaccretedbridgecablesatmoderateflowturbulence
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