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首页> 外文期刊>Journal of Hydrology >Influence of spatial discretization, underground water storage and glacier melt on a physically-based hydrological model of the Upper Durance River basin
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Influence of spatial discretization, underground water storage and glacier melt on a physically-based hydrological model of the Upper Durance River basin

机译:空间离散,地下水蓄水和冰川融化对杜兰斯河上游流域基于物理的水文模型的影响

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摘要

The SAFRAN-ISBA-MODCOU hydrological model (Habets et al., 2008) presents severe limitations for alpine catchments. Here we propose possible model adaptations. For the catchment discretization, Relatively Homogeneous Hydrological Units (RHHUs) are used instead of the classical 8. km square grid. They are defined from the dilineation of hydrological subbasins, elevation bands, and aspect classes. Glacierized and non-glacierized areas are also treated separately. In addition, new modules are included in the model for the simulation of glacier melt, and retention of underground water. The improvement resulting from each model modification is analysed for the Upper Durance basin. RHHUs allow the model to better account for the high spatial variability of the hydrological processes (e.g. snow cover). The timing and the intensity of the spring snowmelt floods are significantly improved owing to the representation of water retention by aquifers. Despite the relatively small area covered by glaciers, accounting for glacier melt is necessary for simulating the late summer low flows. The modified model is robust over a long simulation period and it produces a good reproduction of the intra and interannual variability of discharge, which is a necessary condition for its application in a modified climate context.
机译:SAFRAN-ISBA-MODCOU水文模型(Habets等,2008)对高山流域提出了严重的限制。在这里,我们提出可能的模型调整。对于流域离散化,使用相对均质水文单元(RHHU)代替经典的8. km正方形网格。它们是根据水文盆地,高程带和坡向类别的划分来定义的。冰川地区和非冰川地区也要分开处理。此外,模型中还包括新模块,用于模拟冰川融化和地下水滞留。分析了上杜兰斯盆地每个模型修改产生的改进。 RHHUs使模型能够更好地说明水文过程(例如积雪)的高空间变异性。由于含水层的保水作用,春季融雪洪水的时间和强度得到了显着改善。尽管冰川覆盖的面积相对较小,但模拟夏季末的低流量需要考虑冰川融化。修改后的模型在较长的模拟时间内具有鲁棒性,并且可以很好地再现流量的年内变化和年际变化,这是将其应用于修改后的气候环境的必要条件。

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