Estimation of Runoff and Sediment Yield Using SWAT Model: The Case of Katar Watershed, Rift Valley Lake Basin of Ethiopia

Dulo Husen, B. Abate
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引用次数: 3

Abstract

Estimating runoff and sediment yield at watershed level is important for better understanding of hydrologic processes and identifying hotspot area by using Soil and Water Assessment Tool (SWAT) model for intervention strategies. From the result of Global sensitivity analysis, 12 highly sensitive parameters identified. The obtained results were satisfactory for the gauging station (coefficient of determination (R2)=0.8, Nash-Sutcliffe Efficiency (NSE)=0.6 and percent difference or percent bias (PBIAS)=0) from 1990 to 2005(16) years used calibration and (R2=0.6, ENS=0.55and PBIAS=1.2) from 2006 to 2013(8 year) were used for validation period respectively. Among all sub-watersheds, nine sub watersheds were more vulnerable to soil loss and potentially prone to erosion risk, which was out of range of tolerable soil loss rate (18 tha-1yr-1). In conclusion, the SWAT model could be effectively used to estimate runoff and sediment yield; and identified hotspot area. In addition, the result could help different stakeholders to plan and implement appropriate interventions strategies in the Katar watershed.
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基于SWAT模型的产流产沙估算——以埃塞俄比亚裂谷湖盆地Katar流域为例
利用SWAT模型估算流域径流产沙量对于更好地理解水文过程和识别热点区域具有重要意义。从全局敏感性分析的结果中,确定了12个高敏感参数。采用1990 ~ 2005年(16年)和2006 ~ 2013年(8年)分别进行验证(R2=0.6, ENS=0.55, PBIAS=1.2),测定系数(R2)=0.8, Nash-Sutcliffe效率(NSE)=0.6,差异百分比或偏差百分比(PBIAS)=0。在所有子流域中,有9个子流域的土壤流失率较高,存在潜在的侵蚀风险,超出了可容忍的土壤流失率(18‰-1年-1)范围。综上所述,SWAT模型可以有效地用于估算径流产沙量;并确定了热点区域。此外,研究结果可以帮助不同的利益相关者在Katar流域规划和实施适当的干预策略。
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