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A Numerical Solution for the Integrated Analysis of Water Resources Management: Application to the Mero River Watershed, La Coruna, Spain

机译:水资源管理综合分析的数值解决方案:在西班牙拉科鲁尼亚梅罗河流域的应用

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摘要

This research is concerned with new developments and practical applications of a physically-based numerical model that incorporates new approaches for a finite elements solution to the steady/transient problems of the joint ground/surface water flows. Python scripts are implemented in Geographic Information System (GIS) to store, represent and take decisions on the simulated conditions related to the water resources management at the scale of the watershed. The proposed surface-subsurface model considers surface and groundwater interactions to be 2-D horizontally distributed and depth-averaged through a diffusive wave approach for surface flood routing. Infiltration rates, overland flows and evapotranspiration processes are considered by a diffuse discharge from surface water, non-saturated subsoil and groundwater table. Recent developments also allow for the management of surface water flow control through the capacity of diversion on river beds, spillways and outflow operations of floodgates in weirs and dams of reservoirs. Practical application regards the actual hydrology of the Mero River watershed, with two important water bodies mainly concerned with the water resources management at the Cecebre Reservoir and the present flooding of a deep coal mining excavation. The MELEF model (Modele d'ELEments Eluides, in French) was adapted and calibrated during a period of five years (2008/ 2012) with the help of hydrological parameters, registered flow rates, water levels and registered precipitation, water uses and water management operations in surface and groundwater bodies. The results predict the likely evolution of the Cecebre Reservoir, the flow rates in rivers, the flooding of the Meirama open pit and the local water balances for different hydrological components.
机译:这项研究与基于物理的数值模型的新发展和实际应用有关,该模型结合了用于有限元解决地面/地面水流共同/瞬态问题的有限元方法的新方法。 Python脚本在地理信息系统(GIS)中实现,以在流域范围内与水资源管理相关的模拟条件下存储,表示和决策。提出的地表-地下模型认为地表和地下水的相互作用是二维的水平分布,并通过扩散波方法对地表洪水进行深度平均。从地表水,非饱和地下土壤和地下水位的扩散排放来考虑入渗率,陆上流量和蒸散过程。最近的事态发展还通过对河床的分流能力,溢洪道以及水库堰和大坝的闸门的泄洪能力进行管理。实际应用涉及Mero河流域的实际水文学,其中两个重要的水体主要涉及Cecebre水库的水资源管理和目前深部煤矿开采的洪水。 MELEF模型(法文模型ELE'Eluides)在五年(2008/2012年)期间借助水文参数,登记的流量,水位和登记的降水量,用水和水管理进行了调整和校准在地表水和地下水体中进行操作。结果预测了Cecebre水库的可能演变,河流流量,Meirama露天矿的洪水以及不同水文要素的局部水平衡。

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