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首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Understanding dominant controls on streamflow spatial variability to set up a semi-distributed hydrological model: the case study of the Thur catchment
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Understanding dominant controls on streamflow spatial variability to set up a semi-distributed hydrological model: the case study of the Thur catchment

机译:了解主导控制流出空间变异性,建立半分布式水文模型:Thur Catchment的案例研究

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This study documents the development of a semi-distributed hydrological model aimed at reflecting the dominant controls on observed streamflow spatial variability. The process is presented through the case study of the Thur catchment (Switzerland, 1702km2), an alpine and pre-alpine catchment where streamflow (measured at 10?subcatchments) has different spatial characteristics in terms of amounts, seasonal patterns, and dominance of baseflow. In order to appraise the dominant controls on streamflow spatial variability and build a model that reflects them, we follow a two-stage approach. In a first stage, we identify the main climatic or landscape properties that control the spatial variability of streamflow signatures. This stage is based on correlation analysis, complemented by expert judgement to identify the most plausible cause–effect relationships. In a second stage, the results of the previous analysis are used to develop a set of model experiments aimed at determining an appropriate model representation of the Thur catchment. These experiments confirm that only a hydrological model that accounts for the heterogeneity of precipitation, snow-related processes, and landscape features such as geology produces hydrographs that have signatures similar to the observed ones. This model provides consistent results in space–time validation, which is promising for predictions in ungauged basins. The presented methodology for model building can be transferred to other case studies, since the data used in this work (meteorological variables, streamflow, morphology, and geology maps) are available in numerous regions around the globe.
机译:本研究记录了一个半分布式水文模型的发展,旨在反映观察到的流出空间变异性的主导控制。该过程是通过对阵流域(瑞士,1702km2),高山和预alpine集水的案例研究介绍,其中流出(在10次测量)中具有不同的空间特征,季节性模式和基础流动的统治。为了评估流出空间变异性的主导控制,并建立反映它们的模型,我们遵循两级方法。在第一阶段,我们确定控制流流签名的空间变异性的主要气候或景观属性。该阶段基于相关分析,通过专家判断互动,以确定最合理的造成效应关系。在第二阶段,先前分析的结果用于开发一组模型实验,该模型实验旨在确定Thur集水区的适当模型表示。这些实验证实,只有一种水文模型,占地质等地质等地质的异质性,诸如地质的景观特征产生了具有与观察者类似的签名的水文。该模型提供了一致的节空验证结果,这是对未凝固盆地的预测有望。由于本作工作中使用的数据(气象变量,流流,形态和地质图),可以转移到其他案例研究的所呈现的模型建筑方法。

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