SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure
This study explores the concept of hydraulic flushing gate with an automated control system as a flow control structure of the urban stormwater system. The research team has implemented a flush gate with the automated control system to the flow of the water in a drainage channel. The flow control s...
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my.unimas.ir.300012021-12-04T04:19:14Z http://ir.unimas.my/id/eprint/30001/ SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure Bong, Charles Hin Joo Leong, Geok Teng Aminuddin, Bin Ab Ghani Hanafusa, A. TD Environmental technology. Sanitary engineering This study explores the concept of hydraulic flushing gate with an automated control system as a flow control structure of the urban stormwater system. The research team has implemented a flush gate with the automated control system to the flow of the water in a drainage channel. The flow control structure was used to determine the effectiveness of such design by applying the concept of virtually on a real-world drainage system at Jalan Astana, Kuching. Computer representations of the existing drainage system and flow control structure were built using EPA SWMM 5.0 model. The series of flow control structure was proven to hold the runoff from 10-year storm. The modelling result shows that there is 25.9 % of flow reduction at outlet node. As a modification of the existing drainage system in the urban area involves high construction cost; by installing a flow control structure in the drainage system is an innovative way to control the flow of the water. 2018 Proceeding PeerReviewed text en http://ir.unimas.my/id/eprint/30001/1/SWMM%20Modelling.pdf Bong, Charles Hin Joo and Leong, Geok Teng and Aminuddin, Bin Ab Ghani and Hanafusa, A. (2018) SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure. In: 4th International Conference on Water Resources (ICWR-2018), 27-28 November 2018, Bayview Hotel, Langkawi. |
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TD Environmental technology. Sanitary engineering Bong, Charles Hin Joo Leong, Geok Teng Aminuddin, Bin Ab Ghani Hanafusa, A. SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
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This study explores the concept of hydraulic flushing gate with an automated control system as a flow control structure of the urban stormwater system. The research team has
implemented a flush gate with the automated control system to the flow of the water in a drainage channel. The flow control structure was used to determine the effectiveness of such design by applying the concept of virtually on a real-world drainage system at Jalan Astana, Kuching. Computer representations of the existing drainage system and flow control structure were built using EPA SWMM 5.0 model. The series of flow control structure was proven to hold the runoff from 10-year storm. The modelling result shows that there is 25.9 % of flow reduction at outlet node. As a modification of the existing drainage system in the urban area involves high construction cost; by installing a flow control structure in the drainage system is an innovative way to control the flow of the water. |
format |
Proceeding |
author |
Bong, Charles Hin Joo Leong, Geok Teng Aminuddin, Bin Ab Ghani Hanafusa, A. |
author_facet |
Bong, Charles Hin Joo Leong, Geok Teng Aminuddin, Bin Ab Ghani Hanafusa, A. |
author_sort |
Bong, Charles Hin Joo |
title |
SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
title_short |
SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
title_full |
SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
title_fullStr |
SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
title_full_unstemmed |
SWMM Modelling of Automated Hydraulic Flushing Gate as a Flow Control Structure |
title_sort |
swmm modelling of automated hydraulic flushing gate as a flow control structure |
publishDate |
2018 |
url |
http://ir.unimas.my/id/eprint/30001/1/SWMM%20Modelling.pdf http://ir.unimas.my/id/eprint/30001/ |
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1718930104856346624 |