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Grid size effects analysis and hydrological similarity of surface runoff in flatland basins

机译:平原盆地地表径流的网格大小效应分析与水文相似性

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The effects of grid-size modification on the derived topographic attributes are analysed and a procedure for scaling model parameters and similarity assessment between flow variables is proposed. Hydrological simulations are performed with a physically-based and spatially-distributed quasi-2D mathematical model. The scaled model parameters are the effective roughness coefficient associated with overland flow (n(ov)) and the transverse slope in the cell (TSC). To scale the selected parameters, the criterion of equilibrium storage conservation between the different grid sizes is applied. Three basins of the central-east region of Argentina are modelled. The spatial variability of basin geomorphology is quantified using the entropy concept. The simulation results show that when grid size is increased, to obtain similar hydrological responses it is necessary to increase the n(ov) or to reduce the TSC. In terms of similarity, the best results are achieved when TSC is scaled, particularly when water depths are considered.
机译:分析了网格大小修改对导出的地形属性的影响,并提出了模型参数缩放和流量变量之间相似性评估的过程。水文模拟是使用基于物理和空间分布的准二维数学模型进行的。缩放的模型参数是与陆上流量(n(ov))和单元中的横向坡度(TSC)相关的有效粗糙度系数。为了缩放所选参数,应用了不同网格大小之间的平衡存储守恒标准。对阿根廷中东部地区的三个盆地进行了建模。流域地貌的空间变异性是用熵的概念来量化的。仿真结果表明,当增加网格大小时,为了获得相似的水文响应,必须增加n(ov)或减小TSC。就相似性而言,按比例缩放TSC可获得最佳结果,尤其是考虑水深时。

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