The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir

Side weirs are important structural measures extensively used, for instance, for regulating water levels in rivers and canals. If the length of the opening is limited, the amount of water diverted out of the channel and the effective length can be increased by applying a labyrinth side weir. The pre...

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Main Authors: Saeed Abbasi, Sajjad Fatemi, Amir Ghaderi, Silvia Di Francesco
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/13/1/14
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spelling doaj-6798a6069abf436a882117fe0e4253602020-12-25T00:02:57ZengMDPI AGWater2073-44412021-12-0113141410.3390/w13010014The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side WeirSaeed Abbasi0Sajjad Fatemi1Amir Ghaderi2Silvia Di Francesco3Department of Civil Engineering, Faculty of Engineering, University of Zanjan, Zanjan 537138791, IranDepartment of Civil Engineering, Faculty of Engineering, University of Zanjan, Zanjan 537138791, IranDepartment of Civil Engineering, Faculty of Engineering, University of Zanjan, Zanjan 537138791, IranEngineering Faculty, Niccolò Cusano University, 00166 Rome, ItalySide weirs are important structural measures extensively used, for instance, for regulating water levels in rivers and canals. If the length of the opening is limited, the amount of water diverted out of the channel and the effective length can be increased by applying a labyrinth side weir. The present study deals with numerical simulations regarding the hydraulic performance of a labyrinth side weir with a triangular plan in single-cycle mode. Specifically, six different types of antivortexes embedded inside it and in various hydraulic conditions at different Froude numbers are analyzed. The antivortexes are studied using two groups, permeable and impermeable, with three different heights: 0.5 P, 0.75 P, and 1 P (P: Weir height). The comparison of the simulated water surface profiles with laboratory results shows that the numerical model is able to capture the flow characteristics on the labyrinth side weir. The use of an antivortex in a triangular labyrinth side weir reduces the secondary flows due to the interaction with the transverse vortexes of the vertical axis and increases the discharge capacity by 11%. Antivortexes in a permeable state outperform those in an impermeable state; the discharge coefficient in the permeable state increases up to 3% with respect to the impermeable state. Finally, based on an examination of the best type of antivortex, taking into account shape, permeability, and height, the discharge coefficient increases to 13.4% compared to a conventional labyrinth side weir.https://www.mdpi.com/2073-4441/13/1/14triangular labyrinth side weirdischarge coefficientpermeable and impermeable antivortexantivortex heightFLOW-3D
collection DOAJ
language English
format Article
sources DOAJ
author Saeed Abbasi
Sajjad Fatemi
Amir Ghaderi
Silvia Di Francesco
spellingShingle Saeed Abbasi
Sajjad Fatemi
Amir Ghaderi
Silvia Di Francesco
The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
Water
triangular labyrinth side weir
discharge coefficient
permeable and impermeable antivortex
antivortex height
FLOW-3D
author_facet Saeed Abbasi
Sajjad Fatemi
Amir Ghaderi
Silvia Di Francesco
author_sort Saeed Abbasi
title The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
title_short The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
title_full The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
title_fullStr The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
title_full_unstemmed The Effect of Geometric Parameters of the Antivortex on a Triangular Labyrinth Side Weir
title_sort effect of geometric parameters of the antivortex on a triangular labyrinth side weir
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2021-12-01
description Side weirs are important structural measures extensively used, for instance, for regulating water levels in rivers and canals. If the length of the opening is limited, the amount of water diverted out of the channel and the effective length can be increased by applying a labyrinth side weir. The present study deals with numerical simulations regarding the hydraulic performance of a labyrinth side weir with a triangular plan in single-cycle mode. Specifically, six different types of antivortexes embedded inside it and in various hydraulic conditions at different Froude numbers are analyzed. The antivortexes are studied using two groups, permeable and impermeable, with three different heights: 0.5 P, 0.75 P, and 1 P (P: Weir height). The comparison of the simulated water surface profiles with laboratory results shows that the numerical model is able to capture the flow characteristics on the labyrinth side weir. The use of an antivortex in a triangular labyrinth side weir reduces the secondary flows due to the interaction with the transverse vortexes of the vertical axis and increases the discharge capacity by 11%. Antivortexes in a permeable state outperform those in an impermeable state; the discharge coefficient in the permeable state increases up to 3% with respect to the impermeable state. Finally, based on an examination of the best type of antivortex, taking into account shape, permeability, and height, the discharge coefficient increases to 13.4% compared to a conventional labyrinth side weir.
topic triangular labyrinth side weir
discharge coefficient
permeable and impermeable antivortex
antivortex height
FLOW-3D
url https://www.mdpi.com/2073-4441/13/1/14
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