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Physically-based modelling of hydrological processes in a tropical headwater catchment (West Africa) - process representation and multi-criteria validation

机译:基于物理的热带水源流域(西非)水文过程建模-过程表示和多准则验证

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The aim of the study was to test the applicability of a physically-based model to simulate the hydrological processes in a headwater catchment in Benin. Field investigations in the catchment have shown that lateral processes such as surface runoff and interflow are most important. Therefore, the 1-D SVAT-model SIMULAT was modified to a semi-distributed hillslope version (SIMULAT-H). Based on a good database, the model was evaluated in a multi-criteria validation using discharge, discharge components and soil moisture data. For the validation of discharge, good results were achieved for dry and wet years. The main differences were observable in the beginning of the rainy season. A comparison of the discharge components determined by hydro-chemical measurements with the simulation revealed that the model simulated the ratio of groundwater fiuxes and fast runoff components correctly. For the validation of the discharge components of single events, larger differences were observable, which was partly caused by uncertainties in the precipitation data. The representation of the soil moisture dynamics by the model was good for the top soil layer. For deeper soil horizons, which are characterized by higher gravel content, the differences between simulated and measured soil moisture were larger. A good agreement of simulation results and field investigations was achieved for the runoff generation processes. Intertlow is the predominant process on the upper and the middle slopes, while at the bottom of the hillslope groundwater recharge and - during the rainy season - saturated overland flow are important processes.
机译:该研究的目的是测试基于物理的模型来模拟贝宁的上游水源流域的水文过程的适用性。流域的现场调查表明,横向过程(例如地表径流和内流)最为重要。因此,将一维SVAT模型SIMULAT修改为半分布式的Hillslope版本(SIMULAT-H)。基于良好的数据库,使用排放,排放成分和土壤水分数据,通过多标准验证对模型进行评估。为了验证放电效果,在干燥和潮湿的年份都取得了良好的效果。在雨季开始时可以观察到主要差异。通过水化学测量确定的排放成分与模拟的比较表明,该模型正确模拟了地下水流量和快速径流成分的比率。为了验证单个事件的排放分量,可以观察到更大的差异,部分原因是降水数据的不确定性。该模型对土壤水分动力学的表示对于顶部土壤层是很好的。对于以砾石含量较高为特征的较深层土壤,模拟土壤水分与测量土壤水分之间的差异较大。径流产生过程的模拟结果与现场调查结果吻合良好。中间层是上坡和中坡的主要过程,而在山坡的底部,地下水补给和(在雨季期间)饱和的陆上径流是重要的过程。

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