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Modeling spatial patterns of saturated areas: A comparison of the topographic wetness index and a dynamic distributed model

机译:饱和区域空间模式建模:地形湿度指数与动态分布模型的比较

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摘要

Topography is often one of the major controls on the spatial pattern of saturated areas, which in turn is a key to understanding much of the variability in soils, hydrological processes, and stream water quality. The topographic wetness index (TWI) has become a widely used tool to describe wetness conditions at the catchment scale. With this index, however, it is assumed that groundwater gradients always equal surface gradients. To overcome this limitation, we suggest deriving wetness indices based on simulations of distributed catchment models. We compared these new indices with the TWI and evaluated the different indices by their capacity to predict spatial patterns of saturated areas. Results showed that the model-derived wetness indices predicted the spatial distribution of wetlands significantly better than the TWI. These results encourage the use of a dynamic distributed hydrological model to derive wetness index maps for hydrological landscape analysis in catchments with topographically driven groundwater tables.
机译:地形常常是对饱和区域空间格局的主要控制之一,而地形反过来又是理解土壤,水文过程和溪流水质变化的关键。地形湿度指数(TWI)已成为描述流域尺度湿度条件的一种广泛使用的工具。但是,以该指数为前提,假设地下水梯度始终等于地表梯度。为了克服这一局限性,我们建议基于分布式集水模型的模拟得出湿度指数。我们将这些新指标与TWI进行了比较,并根据其预测饱和区域空间格局的能力评估了不同指标。结果表明,由模型得出的湿度指数预测湿地的空间分布明显好于TWI。这些结果鼓励使用动态分布式水文模型来导出湿度指数图,以便在具有地形驱动的地下水位的流域进行水文景观分析。

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