Insights for Estimating and Predicting Reservoir Sedimentation Using the RUSLE-SDR Approach: A Case of Darbandikhan Lake Basin, Iraq–Iran

Author:

Othman Arsalan Ahmed12ORCID,Ali Salahalddin S.3,Salar Sarkawt G.4ORCID,Obaid Ahmed K.56,Al-Kakey Omeed7,Liesenberg Veraldo8ORCID

Affiliation:

1. Iraq Geological Survey, Al-Andalus Square, Baghdad 10068, Iraq

2. Department of Petroleum Engineering, Komar University of Science and Technology, Sulaimaniyah 46013, Iraq

3. Civil Engineering Department, College of Engineering, Komar University of Science and Technology, Sulaimaniyah 46013, Iraq

4. Department of Geography, College of Education, University of Garmian, Sulaymaniyah 46021, Iraq

5. Department of Earth Sciences, University of Durham, Durham DH1 3LE, UK

6. Department of Geology, University of Baghdad, Baghdad 10068, Iraq

7. Institute of Geology, TU Bergakademie Freiberg, 09599 Freiberg, Germany

8. Department of Forest Engineering, Santa Catarina State University (UDESC), Lages 88520-000, Brazil

Abstract

Soil loss (SL) and its related sedimentation in mountainous areas affect the lifetime and functionality of dams. Darbandikhan Lake is one example of a dam lake in the Zagros region that was filled in late 1961. Since then, the lake has received a considerable amount of sediments from the upstream area of the basin. Interestingly, a series of dams have been constructed (13 dams), leading to a change in the sedimentation rate arriving at the main reservoir. This motivated us to evaluate a different combination of equations to estimate the Revised Universal Soil Loss Equation (RUSLE), Sediment Delivery Ratio (SDR), and Reservoir Sedimentation (RSed). Sets of Digital Elevation Model (DEM) gathered by the Shuttle Radar Topography Mission (SRTM), Tropical Rainfall Measuring Mission (TRMM), Harmonized World Soil Database (HWSD), AQUA eMODIS NDVI V6 data, in situ surveys by echo-sounding bathymetry, and other ancillary data were employed for this purpose. In this research, to estimate the RSed, five models of the SDR and the two most sensitive factors affecting soil-loss estimation were tested (i.e., rainfall erosivity (R) and cover management factor (C)) to propose a proper RUSLE-SDR model suitable for RSed modeling in mountainous areas. Thereafter, the proper RSed using field measurement of the bathymetric survey in Darbandikhan Lake Basin (DLB) was validated. The results show that six of the ninety scenarios tested have errors <20%. The best scenario out of the ninety is Scenario #18, which has an error of <1%, and its RSed is 0.46458 km3·yr−1. Moreover, this study advises using the Modified Fournier index (MIF) equations to estimate the R factor. Avoiding the combination of the Index of Connectivity (IC) model for calculating SDR and land cover for calculating the C factor to obtain better estimates is highly recommended.

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference119 articles.

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