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Application of HEC-HMS Model for Flow Simulation in the Lake Tana Basin: The Case of Gilgel Abay Catchment, Upper Blue Nile Basin, Ethiopia

机译:HEC-HMS模型在塔纳流域流动仿真中的应用:埃塞俄比亚上蓝尼罗河盆地吉尔格尔山谷集水区的情况

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摘要

Understanding the complex relationships between rainfall and runoff processes is necessary for the proper estimation of the quantity of runoff generated in a watershed. The surface runoff was simulated using the Hydrologic Modelling System (HEC-HMS) for the Gilgel Abay Catchment (1609 km2), Upper Blue Nile Basin, Ethiopia. The catchment was delineated and its properties were extracted from a 30 m × 30 m Digital Elevation Model (DEM) of the Lake Tana Basin. The meteorological model was developed within HEC-HMS from rainfall data and the control specifications defined the period and time step of the simulation run. To account for the loss, runoff estimation, and flow routing, Soil Conservation Service Curve Number (SCS-CN), Soil Conservation Service Unit Hydrograph (SCS-UH) and Muskingum methods were used respectively. The rainfall-runoff simulation was conducted using six extreme daily time series events. Initial results showed that there is a clear difference between the observed and simulated peak flows and the total volume. Thereafter, a model calibration with an optimization method and sensitivity analysis was carried out. The result of the sensitivity analysis showed that the curve number is the sensitive parameter. In addition, the model validation results showed a reasonable difference in peak flow (Relative Error in peak, REP = 1.49%) and total volume (Relative Error in volume, REV = 2.38%). The comparison of the observed and simulated hydrographs and the model performance (NSE = 0.884) and their correlation (R2 = 0.925) showed that the model is appropriate for hydrological simulations in the Gilgel Abay Catchment.
机译:了解降雨和径流过程之间的复杂关系是正确估计流域生成的径流量的必要条件。使用水文建模系统(HEC-HMS)来模拟表面径流,用于吉尔格尔·阿巴集水区(1609 km2),上蓝尼罗河盆地,埃塞俄比亚。该集水区被划定,其性质从塔纳池湖湖的30米×30米数字高度模型(DEM)中提取。气象模型是从降雨数据的HEC-HMS中开发,控制规范定义了模拟运行的周期和时间步长。要考虑损失,径流估计和流量路由,分别使用了土壤保护服务曲线数(SCS-CN),土壤保护服务单位水文编程和麝香方法。使用六个极端的日常时间序列事件进行降雨径流模拟。初始结果表明,观察和模拟峰值流动和总体积之间存在明显的差异。此后,进行了具有优化方法和灵敏度分析的模型校准。灵敏度分析的结果表明,曲线数是敏感参数。此外,模型验证结果表明峰值流量(峰值相对误差,Rep = 1.49%)和总体积(体积相对误差,Rev = 2.38%)的合理差异。观察和模拟的水文的比较和模型性能(NSE = 0.884)及其相关性(R2 = 0.925)表明该模型适用于Gilgel Abay集水区中的水文模拟。

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