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首页> 外文期刊>Water >Applying SHETRAN in a Tropical West African Catchment (Dano, Burkina Faso)—Calibration, Validation, Uncertainty Assessment
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Applying SHETRAN in a Tropical West African Catchment (Dano, Burkina Faso)—Calibration, Validation, Uncertainty Assessment

机译:SHETRAN在西非热带流域(布基纳法索达诺)的应用—校准,验证和不确定性评估

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摘要

This study presents the calibration and validation of the physically based spatially distributed hydrological and soil erosion model SHETRAN for the Dano catchment, Burkina Faso. A sensitivity analysis of six model parameters was performed to assess the model response and to reduce the number of parameters for calibration. The hydrological component was calibrated and validated using observed discharge data of two years. Statistical quality measures (R2, NSE, KGE) ranged from 0.79 to 0.66 during calibration and validation. The calibrated hydrological component was used to feed the erosion modeling. The simulated suspended sediment load (SSL) was compared with turbidity‐based measurements of SSL of two years. Achieved quality measures are comparable to other SHETRAN studies. Uncertainties of measured discharge and suspended sediment concentration were determined to assess the propagated uncertainty of SSL. The comparison of measurement uncertainties of discharge and SSL with parameter uncertainty of the corresponding model output showed that simulated discharge and SSL were frequently outside the large measured uncertainty bands. A modified NSE was used to incorporate measurement and parameter uncertainty into the efficiency evaluation of the model. The analyses of simulated erosion sources and spatial patterns showed the importance of river erosion contributing more than 60% to the total simulated sediment loss.
机译:这项研究提出了针对布基纳法索达诺流域的基于物理的空间分布水文和土壤侵蚀模型SHETRAN的校准和验证。对六个模型参数进行了敏感性分析,以评估模型响应并减少用于校准的参数数量。使用两年的观测排放数据对水文分量进行了校准和验证。在校准和验证期间,统计质量度量(R2,NSE,KGE)的范围从0.79到0.66。校准后的水文分量被用于侵蚀模型。将模拟的悬浮泥沙负荷(SSL)与基于浊度的SSL两年的测量结果进行了比较。达到的质量指标可与其他SHETRAN研究媲美。确定了测量排放量和悬浮沉积物浓度的不确定性,以评估SSL的传播不确定性。将放电和SSL的测量不确定度与相应模型输出的参数不确定度进行比较,结果表明,模拟放电和SSL经常不在较大的测量不确定度范围内。修改后的NSE用于将测量和参数不确定性纳入模型的效率评估中。对模拟侵蚀源和空间格局的分析表明,河流侵蚀的重要性占模拟沉积物总损失的60%以上。

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