The simultaneous use of cable and bed sill (CBS) scour countermeasures around a cylindrical pier was investigated. With the aim of finding the best combination of CBS in terms of scour depth reduction, 16 laboratory assessments of local scour were conducted. These experiments were also used to investigate the turbulent flow structure and sediment entrainment. The best combination of simultaneous CBS reduced the scour depth by about 34%. The flow structures around an unprotected pier (reference case) and for the best CBS configuration were compared by employing turbulent analysis methods. Two-dimensional bursting events were used to understand the stochastic nature of the flow structure around the pier. The turbulence characteristics and occurrence probabilities of bursting events confirmed the effect of the combination of CBS on reducing the scour depth. In addition, of all the bursting events, ejection events were found to have the highest transition probabilities.
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1 December 2023
Research Article|
June 09 2022
Effect of simultaneous use of cable and bed sill scour countermeasures around a cylindrical pier
Ehsan Gerami;
Ehsan Gerami
PhD student, Department of Civil Engineering, Estahban Branch, Islamic Azad University, Estahban, Iran
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Manouchehr Heidarpour;
Manouchehr Heidarpour
Professor, Department of Water Engineering, Isfahan University of Technology, Isfahan, Iran (corresponding author: heidar@iut.ac.ir)
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Reza Mohammadpour Ghalati
Reza Mohammadpour Ghalati
Assistant Professor, Department of Civil Engineering, Estahban Branch, Islamic Azad University, Estahban, Iran
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Publisher: Emerald Publishing
Received:
June 03 2021
Accepted:
May 20 2022
Online ISSN: 1751-7729
Print ISSN: 1741-7589
Emerald Publishing Limited: All rights reserved
2022
Proceedings of the Institution of Civil Engineers - Water Management (2023) 176 (6): 277–290.
Article history
Received:
June 03 2021
Accepted:
May 20 2022
Citation
Gerami E, Heidarpour M, Ghalati RM (2023), "Effect of simultaneous use of cable and bed sill scour countermeasures around a cylindrical pier". Proceedings of the Institution of Civil Engineers - Water Management, Vol. 176 No. 6 pp. 277–290, doi: https://doi.org/10.1680/jwama.21.00043
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