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     Research Journal of Applied Sciences, Engineering and Technology


Comparison of Characteristics of Horseshoe Vortex at Circular and Square Piers

Subhasish Das, Rajib Das and Asis Mazumdar
1School of Water Resources Engineering, Jadavpur University, Kolkata-700032, West Bengal, India
Research Journal of Applied Sciences, Engineering and Technology  2013  17:4373-4387
http://dx.doi.org/10.19026/rjaset.5.4432  |  © The Author(s) 2013
Received: October 17, 2012  |  Accepted: December 10, 2012  |  Published: May 01, 2013

Abstract

This study presents an experimental investigation on the characteristics of horseshoe vortex system within the equilibrium scour hole at circular and square pier measured by an Acoustic Doppler Velocimeter (ADV). Two tests were conducted for the approaching flow having undisturbed flow depth (= 0.125 m) greater than the pier width and the depth-averaged approaching flow velocity (= 0.247 m/s) about 68% of the critical velocity of the uniform bed sand that had a median diameter of 0.825 m. The flow measurements by the ADV were taken within the equilibrium scour hole at a circular pier of width 0.11 m. In order to have a comparative study, the ADV measurements within an equilibrium scour hole at a square pier (side facing the approaching flow) of sides equaling the width of the circular pier were also taken. The contours and distributions of the time-averaged velocities, turbulence intensities, turbulent kinetic energy and Reynolds stresses at different azimuthal planes (0° i.e., at the upstream axis of symmetry, 45° and 90°) are presented. Velocity vector plots of the flow field at azimuthal planes are used to show further flow features. The circulation of the horseshoe vortex is determined by using Stokes theorem and Forward difference technique. Bed-shear stresses are also determined from the Reynolds stress distributions. The flow characteristics of the horseshoe vortex are discussed from the point of view of the similarity with the velocity and turbulence characteristic scales.

Keywords:

Circulation, flow pattern, open channel turbulent flow, scour hole, turbulence intensity, vorticity,


References


Competing interests

The authors have no competing interests.

Open Access Policy

This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.

Copyright

The authors have no competing interests.

ISSN (Online):  2040-7467
ISSN (Print):   2040-7459
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