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首页> 外文期刊>Journal of Hydrology >Investigating the role of geology in the hydrological response of Mediterranean catchments prone to flash-floods: Regional modelling study and process understanding
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Investigating the role of geology in the hydrological response of Mediterranean catchments prone to flash-floods: Regional modelling study and process understanding

机译:调查地质在易发生洪水的地中海流域水文响应中的作用:区域模型研究和过程理解

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摘要

In this study, a regional distributed hydrological model is used to perform long-term and flash-flood event simulations, over the Cevennes-Vivarais region (south of France). The objective is to improve our understanding on the role played by geology on the hydrological processes of catchments during two past flash-flood events. This modelling work is based on Vannier et al. ("Regional estimation of catchment-scale soil properties by means of streamflow recession analysis for use in distributed hydrological models", Hydrological Processes, 2014), where streamflow recessions are analysed to estimate the thickness and hydraulic conductivity of weathered rock layers, depending on the geological nature of catchments. Weathered rock layers are thus implemented into the hydrological model CVN-p, and the contribution of these layers is assessed during flash-flood events simulations as well as during inter event periods. The model is used without any calibration, to test hypotheses on the active hydrological processes. The results point out two different hydrological behaviours, depending on the geology: on crystalline rocks (granite and gneiss), the addition of a weathered rock layer considerably improves the simulated discharges, during flash-flood events as well as during recession periods, and makes the model able to remarkably reproduce the observed streamflow dynamics. For other geologies (schists especially), the benefits are real, but not sufficient to properly simulate the observed streamflow dynamics. These results probably underline the existence of poorly known processes (flow paths, non-linear spilling process) associated with the planar structure of schisty rocks. On a methodological point of view, this study proposes a simple way to account for the additional storage associated with each geological entity, through the addition of a weathered porous rock layer situated below the traditionally considered upper soil horizons, and shows its applicability and benefits for the simulation of flash flood events at the regional scale. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,使用区域分布式水文模型对塞文山脉-维瓦拉伊斯地区(法国南部)进行了长期和洪涝事件模拟。目的是增进我们对过去两次洪水事件中地质学在流域水文过程中所起的作用的了解。该建模工作基于Vannier等人。 (“用于分布式水文模型的利用流向衰退分析对流域规模土壤特性的区域估计”,《水文过程》,2014年),其中分析了流向衰退以估计风化岩石层的厚度和水力传导率,具体取决于流域的地质性质。风化的岩石层因此被应用到水文模型CVN-p中,并且在暴洪事件模拟以及事件间期间评估了这些层的贡献。该模型无需任何校准即可用于测试有关活跃水文过程的假设。结果指出了两种不同的水文行为,具体取决于地质情况:在结晶岩(花岗岩和片麻岩)上,增加风化岩石层可显着改善模拟洪水,洪水和衰退期间的排放,并该模型能够显着再现观察到的水流动力学。对于其他地质(尤其是片岩),其好处是真实的,但不足以正确模拟观察到的水流动力学。这些结果可能强调了与淫秽岩石的平面结构相关的已知过程(流动路径,非线性溢出过程)的存在。从方法学的角度来看,这项研究提出了一种简单的方法,通过增加位于传统上层土壤层之下的风化多孔岩石层,来解释与每个地质实体相关的额外存储,并显示了其适用性和益处。在区域范围内模拟山洪暴发事件。 (C)2016 Elsevier B.V.保留所有权利。

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