Scour Reduction around Bridge Pier Using the Airfoil-Shaped Collar

Author:

Gupta Lav Kumar1,Pandey Manish1ORCID,Raj P. Anand1,Pu Jaan H.2ORCID

Affiliation:

1. Civil Engineering Department, National Institute of Technology Warangal, Warangal 506004, India

2. Faculty of Engineering and Informatics, University of Bradford, Bradford BD7 1DP, UK

Abstract

Scouring around the bridge pier is a natural and complex phenomenon that results in bridge failure. Failure of bridges have potential devastation and public safety and economic loss, which lead to political consequences and environmental impacts. Therefore, it is essential to countermeasure the scour around the bridge pier. This paper studies the effects of four different airfoil-shaped collars (i.e., bc1 = 1.5b, bc2 = 2.0b, bc3 = 2.5b and bc4 = 3.0b, where bc and b are the diameter of the airfoil-shaped collar and pier, respectively) as a scour countermeasure. All the experiments are conducted under clear water conditions with uniform sediment and a constant water depth (y) of 10 cm. Airfoil-shaped collar is placed at four elevations, i.e., bed level, y/4, y/2 and 3y/4 above the sediment bed level. It is observed that the maximum percentages of scour reduction of 86, 100 and 100% occurred due to protection provided by the collar bc2, bc3 and bc4, respectively, at sediment bed level. So, collars bc2, bc3 and bc4 are efficient at the sediment bed level. The profiles of scour hole show that the length of the transverse scour hole is greater than that of the longitudinal one. Numerical investigation of the morphological changes in sediment bed and scour depth contours is developed using the FLOW-3D for the pier with and without the airfoil-shaped collar.

Publisher

MDPI AG

Subject

Earth-Surface Processes,Waste Management and Disposal,Water Science and Technology,Oceanography

Reference44 articles.

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3. Negm, A.M., Moustafa, G.M., Abdalla, Y.M., Fathy, A.A., and Affairs, S. (2009, January 12–15). Optimal Shape of Collar To Minimize Local Scour Around Bridge Piers. Proceedings of the Thirteenth International Water Technology Conferenc, IWTC13 2009, Hurghada, Egypt.

4. Lagasse, P.F., Clopper, P.E., Zevenbergen, L.W., and Girard, L.G. (2007). Countermeasures to Protect Bridge Piers from Scour, NCHRP.

5. State-of-the-Art Review on the Causes and Mechanisms of Bridge Collapse;Deng;J. Perform. Constr. Facil.,2016

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