Flow back-up caused by structures within open channels

With two-third of Singapore‟s total load area becoming water catchments, it is crucial to develop these utilitarian drains, canals and reservoirs beyond their functional use and transform them into vibrant, beautiful, clean and aesthetically pleasing lifestyle attractions where recreational and comm...

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Main Author: Chen, Xingxia.
Other Authors: Shuy Eng Ban
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/15951
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-159512023-03-03T17:09:31Z Flow back-up caused by structures within open channels Chen, Xingxia. Shuy Eng Ban School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Water resources With two-third of Singapore‟s total load area becoming water catchments, it is crucial to develop these utilitarian drains, canals and reservoirs beyond their functional use and transform them into vibrant, beautiful, clean and aesthetically pleasing lifestyle attractions where recreational and communal bonding activities can take place (Singapore‟s current ABC Waters programme). These developments will be done promptly through the construction of recreational deck ways that requires placement of supporting piers in the drains or reservoirs. Hence, this report aims to study the backwater resulted upstream of the bridge piers by three different methodologies namely energy, momentum and yarnell‟s equations. Simulation of pier configurations will be carried out using a hydraulic program, HEC-RAS, based on the number of piers used, the total channel blockage and the shapes of pier for each respective method. The energy approach has shown to be the most conservative method as it produces the largest flow backup for similar pier configurations. Also, the flow backup generally increases with an increase in the number of rows of piers across the channel with a square shaped pier causing the largest backwater effect followed by a triangular pier and a circular pier in decreasing order. It was observed for the same total channel blockage, the flow backup is independent of the lateral arrangement of piers across the cross section. Bachelor of Engineering (Environmental Engineering) 2009-05-19T07:14:09Z 2009-05-19T07:14:09Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/15951 en Nanyang Technological University 45 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Civil engineering::Water resources
spellingShingle DRNTU::Engineering::Civil engineering::Water resources
Chen, Xingxia.
Flow back-up caused by structures within open channels
description With two-third of Singapore‟s total load area becoming water catchments, it is crucial to develop these utilitarian drains, canals and reservoirs beyond their functional use and transform them into vibrant, beautiful, clean and aesthetically pleasing lifestyle attractions where recreational and communal bonding activities can take place (Singapore‟s current ABC Waters programme). These developments will be done promptly through the construction of recreational deck ways that requires placement of supporting piers in the drains or reservoirs. Hence, this report aims to study the backwater resulted upstream of the bridge piers by three different methodologies namely energy, momentum and yarnell‟s equations. Simulation of pier configurations will be carried out using a hydraulic program, HEC-RAS, based on the number of piers used, the total channel blockage and the shapes of pier for each respective method. The energy approach has shown to be the most conservative method as it produces the largest flow backup for similar pier configurations. Also, the flow backup generally increases with an increase in the number of rows of piers across the channel with a square shaped pier causing the largest backwater effect followed by a triangular pier and a circular pier in decreasing order. It was observed for the same total channel blockage, the flow backup is independent of the lateral arrangement of piers across the cross section.
author2 Shuy Eng Ban
author_facet Shuy Eng Ban
Chen, Xingxia.
format Final Year Project
author Chen, Xingxia.
author_sort Chen, Xingxia.
title Flow back-up caused by structures within open channels
title_short Flow back-up caused by structures within open channels
title_full Flow back-up caused by structures within open channels
title_fullStr Flow back-up caused by structures within open channels
title_full_unstemmed Flow back-up caused by structures within open channels
title_sort flow back-up caused by structures within open channels
publishDate 2009
url http://hdl.handle.net/10356/15951
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