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A Novel Approach for the Integral Management of Water Extremes in Plain Areas

机译:平原地区水极端积分管理的一种新方法

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摘要

: Due to the socioeconomical impact of water extremes in plain areas, there is a considerable demand for suitable strategies aiding in the management of water resources and rainfed crops. Numerical models allow for the modelling of water extremes and their consequences in order to decide on management strategies. Moreover, the integration of hydrologic models with hydraulic models under continuous or event-based approaches would synergistically contribute to better forecasting of water extreme consequences under different scenarios. This study conducted at the Santa Catalina stream basin (Buenos Aires province, Argentina) focuses on the integration of numerical models to analyze the hydrological response of plain areas to water extremes under different scenarios involving the implementation of an eco-efficient infrastructure (i.e., the integration of a green infrastructure and hydraulic structures). The two models used for the integration were: the Soil and Water Assessment Tool (SWAT) and the CELDAS8 (CTSS8) hydrologic-hydraulic model. The former accounts for the processes related to the water balance (e.g., evapotranspiration, soil moisture, percolation, groundwater discharge and surface runoff), allowing for the analysis of water extremes for either dry or wet conditions. Complementarily, CTSS8 models the response of a basin to a rainfall event (e.g., runoff volume, peak flow and time to peak flow, flooded surface area). A 10-year data record (2003−2012) was analyzed to test different green infrastructure scenarios. SWAT was able to reproduce the waterflow in the basin with Nash Sutcliffe (NS) efficiency coefficients of 0.66 and 0.74 for the calibration and validation periods, respectively. The application of CTSS8 for a flood event with a return period of 10 years showed that the combination of a green infrastructure and hydraulic structures decreased the surface runoff by 28%, increased the soil moisture by 10% on an average daily scale, and reduced the impact of floods by 21% during rainfall events. The integration of continuous and event-based models for studying the impact of water extremes under different hypothetical scenarios represents a novel approach for evaluating potential basin management strategies aimed at improving the agricultural production in plain areas.
机译::由于普通地区的水极值的社会经济影响,有相当大的需求,适合在水资源和雨量作物管理中实现了适当的策略。数值模型允许对水极端的建模及其后果,以便决定管理策略。此外,在连续或基于事件的方法下与液压模型与水力模型的整合将协同作用地有助于更好地预测不同情景下的水极度后果。本研究在Santa Catalina溪流盆(Buenos Aires Province,阿根廷)进行了专注于数值模型的整合,以分析涉及实施生态基础设施的不同情景下普通区域的水文响应(即绿色基础设施和液压结构的整合)。用于整合的两种模型是:土壤和水评估工具(SWAT)和Celdas8(CTSS8)水文 - 液压模型。前者占与水平衡有关的过程(例如,蒸散蒸腾,土壤水分,渗透,地下水排放和表面径流),允许对干燥或湿润条件进行分析。互补的是,CTSS8模拟盆地的响应到降雨事件(例如,径流量,峰值流量和峰值流动,淹没的表面积)。分析了10年的数据记录(2003-2012)以测试不同的绿色基础设施方案。 SWAT能够分别在盆地(NS)效率系数为0.66和0.74的盆地中的水流,分别用于校准和验证期。 CTS8在返回期限为10年的洪水事件的应用表明,绿色基础设施和液压结构的组合将表面径流降低28%,平均每日规模增加了10%的土壤水分,降低了降雨事件期间洪水的影响21%。用于研究不同假设情景下的持续和事件基础的模型的整合代表了一种评估潜在盆地管理策略的新方法,旨在改善普通地区的农业生产。

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