Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT
Catchments; Discharge (fluid mechanics); Forecasting; Hydroelectric power; Rain; Sediment transport; Sedimentation; Surveys; Rainfall runoff; Reservoir sedimentation; Sediment delivery ratio; Sediment yields; Soil loss; SWAT; Runoff
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2023
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my.uniten.dspace-242952023-05-29T15:22:38Z Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT Abdul Razad Z. Azwin.razad@tnb.com.my Sidek L.M. Basri H. Jung K.S. 57215682841 35070506500 57065823300 37015343400 Catchments; Discharge (fluid mechanics); Forecasting; Hydroelectric power; Rain; Sediment transport; Sedimentation; Surveys; Rainfall runoff; Reservoir sedimentation; Sediment delivery ratio; Sediment yields; Soil loss; SWAT; Runoff Sediment inflow prediction is needed for the development of sediment management strategies to ensure the sustainability of hydropower. There are many methods to predict and forecast reservoir sedimentation, focusing on the sediment yield catchment, sediment transport along the river network and sediment deposition inside the reservoir. This study compare three main methods in predicting the sediment inflow into Ringlet Reservoir, a hydropower reservoir located in active agricultural highland area in Cameron Highlands, Pahang. It compares sediment inflow prediction using 1) soil loss and sediment delivery ratio (RUSLE-SDR); 2) integration of rainfall runoff and sediment discharge rating curves (RR-SRC) and 3) processed based sediment yield model using SWAT. Accuracy of the annual prediction from each method is assessed based on the available bathymetry survey results, proving that SWAT performs the best. � 2019 Mattingley Publishing. All rights reserved. Final 2023-05-29T07:22:38Z 2023-05-29T07:22:38Z 2019 Article 2-s2.0-85081701337 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85081701337&partnerID=40&md5=ec77d54246c26320dec2df29c49f4f7d https://irepository.uniten.edu.my/handle/123456789/24295 81 11-Dec 3276 3283 Mattingley Publishing Scopus |
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Catchments; Discharge (fluid mechanics); Forecasting; Hydroelectric power; Rain; Sediment transport; Sedimentation; Surveys; Rainfall runoff; Reservoir sedimentation; Sediment delivery ratio; Sediment yields; Soil loss; SWAT; Runoff |
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57215682841 Abdul Razad Z. Azwin.razad@tnb.com.my Sidek L.M. Basri H. Jung K.S. |
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Abdul Razad Z. Azwin.razad@tnb.com.my Sidek L.M. Basri H. Jung K.S. |
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Abdul Razad Z. Azwin.razad@tnb.com.my Sidek L.M. Basri H. Jung K.S. Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
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Abdul Razad Z. |
title |
Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
title_short |
Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
title_full |
Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
title_fullStr |
Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
title_full_unstemmed |
Differentiation of reservoir sediment inflow forecasting using RUSLE-SDR, Rainfall - Runoff - Sediment Discharge Rating Curve (RR-SRC) and SWAT |
title_sort |
differentiation of reservoir sediment inflow forecasting using rusle-sdr, rainfall - runoff - sediment discharge rating curve (rr-src) and swat |
publisher |
Mattingley Publishing |
publishDate |
2023 |
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1806428294348800000 |
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13.214268 |