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Influence of spatial variations of microtopography and infiltration on surface runoff and field scale hydrological connectivity

机译:微观地形和入渗空间变化对地表径流和田间尺度水文连通性的影响

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Surface runoff on agricultural fields arises when rainfall exceeds infiltration. Excess water ponding in and flowing through local microtopography increases the hydrological connectivity of fields. In turn, an increased level of hydrological connectivity leads to a higher surface runoff flux at the field boundaries. We investigated the functional hydrological connectivity of synthetical elevation fields with varying statistical properties. For this purpose, we developed an object-oriented ponding and redistribution model to which Philip's infiltration model was coupled. The connectivity behaviour is determined by the presence of depressions with a large area and spatial organization of microtopography in rills or channels. The presence of microdepressions suppresses the effect of the spatial variation of infiltration properties. Connectivity behaviour of a field with a varying spatial distribution of infiltration properties can be predicted by transforming the unique connectivity function that was defined for a designated microtopography.
机译:当降雨超过入渗量时,会在农田上产生地表径流。进入局部微地形并流经局部微地形的过多水增加了田间的水文连通性。反过来,水文连通性水平的提高导致场边界处的地表径流更高。我们调查了具有不同统计特性的合成高程场的功能水文连通性。为此,我们开发了与Philip的渗透模型耦合的面向对象的思考和重新分配模型。连通性取决于在小溪或河道中存在大面积凹陷和微观地形的空间组织。微凹陷的存在抑制了渗透特性空间变化的影响。可以通过转换为指定的微形貌定义的唯一连通性函数来预测具有不同渗透性空间分布的字段的连通性行为。

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