Local scour downstream of a weir

The present study explores the complex phenomena of scouring downstream of a weir, specially focusing on the maximum scour depth caused by two distinct sand diameters. The study aims to extend previous research and develop equations, grounded in empirical data, to accurately predict the maximum scou...

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Main Author: Win, Yone Yone
Other Authors: Lim Siow Yong
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2023
Subjects:
Online Access:https://hdl.handle.net/10356/172741
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1727412023-12-22T15:35:13Z Local scour downstream of a weir Win, Yone Yone Lim Siow Yong School of Civil and Environmental Engineering CSYLIM@ntu.edu.sg Engineering::Civil engineering::Water resources The present study explores the complex phenomena of scouring downstream of a weir, specially focusing on the maximum scour depth caused by two distinct sand diameters. The study aims to extend previous research and develop equations, grounded in empirical data, to accurately predict the maximum scour depth. The parameters analysed include the weir height, flow rate, tailwater depth and median sand size. This research utilizes a systematic experimental setup, employing a hydraulic flume in a laboratory setting to simulate the weir flow conditions and record via webcam the scour formation downstream of the weir. The study extends the scope by examining the scour depth using two median sediment sizes of 0.77mm and 4.75mm. The latter large sediment size has not been tested so far. The primary findings indicate that an increase in flow rate and a decrease in tailwater depth result in a broader and deeper scour formation. The inclusion of an apron was observed to significantly diminish the scour depth while having a negligible effect on the scour length. Furthermore, changes in sediment size were found to have a direct impact on the dimensions of the scour hole. Based on these results, a regression analysis was performed to formulate prediction equations for the maximum scour depth, taking into account the correlating parameters. The outcomes from these prediction equations for maximum scour depth has an error margin of ± 30%, which is deemed adequately reliable to estimate the scour downstream of a weir for practical purposes. Bachelor of Engineering (Civil) 2023-12-19T07:07:12Z 2023-12-19T07:07:12Z 2023 Final Year Project (FYP) Win, Y. Y. (2023). Local scour downstream of a weir. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/172741 https://hdl.handle.net/10356/172741 en WR-15 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering::Water resources
spellingShingle Engineering::Civil engineering::Water resources
Win, Yone Yone
Local scour downstream of a weir
description The present study explores the complex phenomena of scouring downstream of a weir, specially focusing on the maximum scour depth caused by two distinct sand diameters. The study aims to extend previous research and develop equations, grounded in empirical data, to accurately predict the maximum scour depth. The parameters analysed include the weir height, flow rate, tailwater depth and median sand size. This research utilizes a systematic experimental setup, employing a hydraulic flume in a laboratory setting to simulate the weir flow conditions and record via webcam the scour formation downstream of the weir. The study extends the scope by examining the scour depth using two median sediment sizes of 0.77mm and 4.75mm. The latter large sediment size has not been tested so far. The primary findings indicate that an increase in flow rate and a decrease in tailwater depth result in a broader and deeper scour formation. The inclusion of an apron was observed to significantly diminish the scour depth while having a negligible effect on the scour length. Furthermore, changes in sediment size were found to have a direct impact on the dimensions of the scour hole. Based on these results, a regression analysis was performed to formulate prediction equations for the maximum scour depth, taking into account the correlating parameters. The outcomes from these prediction equations for maximum scour depth has an error margin of ± 30%, which is deemed adequately reliable to estimate the scour downstream of a weir for practical purposes.
author2 Lim Siow Yong
author_facet Lim Siow Yong
Win, Yone Yone
format Final Year Project
author Win, Yone Yone
author_sort Win, Yone Yone
title Local scour downstream of a weir
title_short Local scour downstream of a weir
title_full Local scour downstream of a weir
title_fullStr Local scour downstream of a weir
title_full_unstemmed Local scour downstream of a weir
title_sort local scour downstream of a weir
publisher Nanyang Technological University
publishDate 2023
url https://hdl.handle.net/10356/172741
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