Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]

A stage-discharge rating curve represents the relationship between the water level at a given point in a stream and a corresponding volumetric rate of flow. It is widely used for the analysis of flow regimes, designing hydraulic structures, flood forecasting, flow-sediment interaction and prediction...

Full description

Saved in:
Bibliographic Details
Main Authors: Saadon, Azlinda, Abdul Manaf, Nur Anim, Tholibon, Duratul Ain, Ahmad Kamal, Norashikin, Yassin, Ahmad Ihsan
Format: Article
Language:English
Published: 2023
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/85642/1/85642.pdf
https://ir.uitm.edu.my/id/eprint/85642/
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.85642
record_format eprints
spelling my.uitm.ir.856422023-10-12T03:10:37Z https://ir.uitm.edu.my/id/eprint/85642/ Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.] jscet Saadon, Azlinda Abdul Manaf, Nur Anim Tholibon, Duratul Ain Ahmad Kamal, Norashikin Yassin, Ahmad Ihsan TC Hydraulic engineering. Ocean engineering A stage-discharge rating curve represents the relationship between the water level at a given point in a stream and a corresponding volumetric rate of flow. It is widely used for the analysis of flow regimes, designing hydraulic structures, flood forecasting, flow-sediment interaction and prediction, and river channel analysis. The reliability and stability of the stage-discharge rating curve are based on numerous numbers of discharges and stage data from the lowest to the highest bank full stage observed over a long period of time. Stage-discharge rating curves contribute to reliable discharge prediction for future flood forecasting. This study focuses on the best-practice approach to stage-discharge rating curve development for selected rivers in Selangor. The stage-discharge rating curve derived was evaluated in terms of the statistical parameter, which denotes the degree of determination or r-squared value. The polynomial function yields better accuracy at 68.6% than the exponential function at 60.3%. Model validation was performed using the discrepancy ratio and confirmed that the stage-discharge rating curve developed using both mathematical functions give good predictions with more than 80% accuracy for the specified flow range and stage levels. 2023-09 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/85642/1/85642.pdf Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]. (2023) Journal of Sustainable Civil Engineering & Technology (JSCET) <https://ir.uitm.edu.my/view/publication/Journal_of_Sustainable_Civil_Engineering_=26_Technology_=28JSCET=29/>, 2 (2): 5. pp. 49-64. ISSN 2948-4294
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic TC Hydraulic engineering. Ocean engineering
spellingShingle TC Hydraulic engineering. Ocean engineering
Saadon, Azlinda
Abdul Manaf, Nur Anim
Tholibon, Duratul Ain
Ahmad Kamal, Norashikin
Yassin, Ahmad Ihsan
Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
description A stage-discharge rating curve represents the relationship between the water level at a given point in a stream and a corresponding volumetric rate of flow. It is widely used for the analysis of flow regimes, designing hydraulic structures, flood forecasting, flow-sediment interaction and prediction, and river channel analysis. The reliability and stability of the stage-discharge rating curve are based on numerous numbers of discharges and stage data from the lowest to the highest bank full stage observed over a long period of time. Stage-discharge rating curves contribute to reliable discharge prediction for future flood forecasting. This study focuses on the best-practice approach to stage-discharge rating curve development for selected rivers in Selangor. The stage-discharge rating curve derived was evaluated in terms of the statistical parameter, which denotes the degree of determination or r-squared value. The polynomial function yields better accuracy at 68.6% than the exponential function at 60.3%. Model validation was performed using the discrepancy ratio and confirmed that the stage-discharge rating curve developed using both mathematical functions give good predictions with more than 80% accuracy for the specified flow range and stage levels.
format Article
author Saadon, Azlinda
Abdul Manaf, Nur Anim
Tholibon, Duratul Ain
Ahmad Kamal, Norashikin
Yassin, Ahmad Ihsan
author_facet Saadon, Azlinda
Abdul Manaf, Nur Anim
Tholibon, Duratul Ain
Ahmad Kamal, Norashikin
Yassin, Ahmad Ihsan
author_sort Saadon, Azlinda
title Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
title_short Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
title_full Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
title_fullStr Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
title_full_unstemmed Best practice approach to stage-discharge rating curve: case study of selected rivers in Selangor / Azlinda Saadon ... [et al.]
title_sort best practice approach to stage-discharge rating curve: case study of selected rivers in selangor / azlinda saadon ... [et al.]
publishDate 2023
url https://ir.uitm.edu.my/id/eprint/85642/1/85642.pdf
https://ir.uitm.edu.my/id/eprint/85642/
_version_ 1781709286783582208