Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs

The hydraulic performance of rectangular labyrinth weirs has been investigated by many researchers, however, the effects of the corner shape on the hydraulic performance of rectangular labyrinth weirs have not been addressed in the current literature. Accordingly, this experimental study aims to exp...

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Main Authors: Omed S. Q. Yousif, Moses Karakouzian
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Fluids
Subjects:
Online Access:https://www.mdpi.com/2311-5521/5/3/117
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spelling doaj-da5de4f22f7b40118b67c2e9eaa084422020-11-25T03:07:29ZengMDPI AGFluids2311-55212020-07-01511711710.3390/fluids5030117Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth WeirsOmed S. Q. Yousif0Moses Karakouzian1Department of Water Resources Engineering, University of Sulaimani, Sulaimaniyah, Kurdistan Region 46001, IraqDepartment of Civil and Environmental Engineering, University of Nevada, Las Vegas, NV 89154, USAThe hydraulic performance of rectangular labyrinth weirs has been investigated by many researchers, however, the effects of the corner shape on the hydraulic performance of rectangular labyrinth weirs have not been addressed in the current literature. Accordingly, this experimental study aims to explore the effect of the corner shape of on discharge efficiency of rectangular labyrinth weirs. Five flat-crested rectangular labyrinth weirs, with five different corner shapes, were made of High-Density Polyethylene Plastic (HDPE) and tested in a rectangular flume. Under different overflow discharges, the discharge coefficients for the rectangular labyrinth weirs were determined. The results showed that the shape of corners for rectangular labyrinth weirs was an effective factor. For example, rounding or beveling the corners can significantly increase the discharge capacity of the rectangular labyrinth weirs. However, the rounded corner shape was slightly better than the beveled corner shape. Among all labyrinth weir models tested in this study, the rectangular labyrinth weir with a semi-circular apex showed the highest hydraulic efficiency, while the one with an acute-angle corner shape showed the lowest hydraulic efficiency. For the rectangular labyrinth weir having a semi-circular shape, although the original effective length reduced by about 14%, the discharge coefficient, CL, increased by 16.7% on average. For the rectangular labyrinth weir that has an acute-angle corner shape, although the effective length (LC) of the weir increased by 23%, its discharge capacity decreased by 35.2% on average. Accordingly, improper folding of the side-walls of the rectangular labyrinth weir led to a significant reduction in the weir’s hydraulic performance.https://www.mdpi.com/2311-5521/5/3/117rectangular labyrinth weirsspillwaysdischarge coefficientcorner shapehydraulic performance
collection DOAJ
language English
format Article
sources DOAJ
author Omed S. Q. Yousif
Moses Karakouzian
spellingShingle Omed S. Q. Yousif
Moses Karakouzian
Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
Fluids
rectangular labyrinth weirs
spillways
discharge coefficient
corner shape
hydraulic performance
author_facet Omed S. Q. Yousif
Moses Karakouzian
author_sort Omed S. Q. Yousif
title Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
title_short Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
title_full Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
title_fullStr Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
title_full_unstemmed Effect of Corner Shape on Hydraulic Performance of One-Cycle Rectangular Labyrinth Weirs
title_sort effect of corner shape on hydraulic performance of one-cycle rectangular labyrinth weirs
publisher MDPI AG
series Fluids
issn 2311-5521
publishDate 2020-07-01
description The hydraulic performance of rectangular labyrinth weirs has been investigated by many researchers, however, the effects of the corner shape on the hydraulic performance of rectangular labyrinth weirs have not been addressed in the current literature. Accordingly, this experimental study aims to explore the effect of the corner shape of on discharge efficiency of rectangular labyrinth weirs. Five flat-crested rectangular labyrinth weirs, with five different corner shapes, were made of High-Density Polyethylene Plastic (HDPE) and tested in a rectangular flume. Under different overflow discharges, the discharge coefficients for the rectangular labyrinth weirs were determined. The results showed that the shape of corners for rectangular labyrinth weirs was an effective factor. For example, rounding or beveling the corners can significantly increase the discharge capacity of the rectangular labyrinth weirs. However, the rounded corner shape was slightly better than the beveled corner shape. Among all labyrinth weir models tested in this study, the rectangular labyrinth weir with a semi-circular apex showed the highest hydraulic efficiency, while the one with an acute-angle corner shape showed the lowest hydraulic efficiency. For the rectangular labyrinth weir having a semi-circular shape, although the original effective length reduced by about 14%, the discharge coefficient, CL, increased by 16.7% on average. For the rectangular labyrinth weir that has an acute-angle corner shape, although the effective length (LC) of the weir increased by 23%, its discharge capacity decreased by 35.2% on average. Accordingly, improper folding of the side-walls of the rectangular labyrinth weir led to a significant reduction in the weir’s hydraulic performance.
topic rectangular labyrinth weirs
spillways
discharge coefficient
corner shape
hydraulic performance
url https://www.mdpi.com/2311-5521/5/3/117
work_keys_str_mv AT omedsqyousif effectofcornershapeonhydraulicperformanceofonecyclerectangularlabyrinthweirs
AT moseskarakouzian effectofcornershapeonhydraulicperformanceofonecyclerectangularlabyrinthweirs
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