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Adaptation Strategy to Mitigate the Impact of Climate Change on Water Resources in Arid and Semi-Arid Regions : a Case Study

机译:减缓气候变化对干旱和半干旱地区水资源影响的适应战略:个案研究

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摘要

Climate change and drought phenomena impacts have become a growing concern for water resources engineers and policy makers, mainly in arid and semi-arid areas. This study aims to contribute to the development of a decision support tool to prepare water resources managers and planners for climate change adaptation. The Hydrologiska Byråns Vattenbalansavdelning (The Water Balance Department of the Hydrological Bureau) hydrologic model was used to define the boundary conditions for the reservoir capacity yield model comprising daily reservoir inflow from a representative example watershed with the size of 14,924 km2 into a reservoir with the capacity of 6.80 Gm3. The reservoir capacity yield model was used to simulate variability in climate change-induced differences in reservoir capacity needs and performance (operational probability of failure, resilience, and vulnerability). Owing to the future precipitation reduction and potential evapotranspiration increase during the worst case scenario (−40% precipitation and +30% potential evapotranspiration), substantial reductions in streamflow of between −56% and −58% are anticipated for the dry and wet seasons, respectively. Furthermore, model simulations recommend that as a result of future climatic conditions, the reservoir operational probability of failure would generally increase due to declined reservoir inflow. The study developed preparedness plans to combat the consequences of climate change and drought.
机译:气候变化和干旱现象的影响已成为水资源工程师和决策者越来越多的关注,主要是在干旱和半干旱地区。这项研究旨在促进决策支持工具的开发,以使水资源管理者和规划者为适应气候变化做好准备。 HydrologiskaByrånsVattenbalansavdelning(水文局水平衡局)水文模型用于定义水库容量产量模型的边界条件,该模型包括从具有代表性的示例流域(面积为14,924 km2)到具有水容量的水库的每日水库入流量。 6.80立方米。油藏容量产量模型用于模拟气候变化引起的油藏容量需求和性能差异(故障,复原力和脆弱性的操作概率)的变化。由于在最坏的情况下(−40%的降水量和+ 30%的潜在蒸散量),未来的降水减少和潜在的蒸散量会增加,因此预计干季和湿季的水流量将大幅减少-56%至-58%,分别。此外,模型模拟建议,由于未来气候条件的影响,由于储层流入量的减少,储层运行失败的可能性通常会增加。该研究制定了应对气候变化和干旱后果的准备计划。

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