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Pareto Optimization of Water Resources Using the Nexus Approach

机译:使用Nexus方法的帕累托水资源优化

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摘要

The continuously growing population in combination with the escalating urbanization and economic growth increase the pressure on water, energy and food resources of our planet. This entails an urgent need for proper water resources management within the water-energy-food (WEF) nexus concept. The WEF nexus considers water, energy and food as three continuously interconnected sectors, whose complex interactions lead to an increased number of trade-offs and potential conflicts. Computational modeling can be used to quantify these interactions, reduce trade-offs and promote synergies. We investigate the water resources in the Upper Blue Nile River (UBNR) basin, one of the two main sources of the Nile, using the Hydronomeas tool. Hydronomeas is based on the parameterization-simulation-optimization method; optimization is implemented in two levels, using a holistic approach and multiple criteria. We assign various targets, constraints and priorities to the UBNR system of reservoirs, hydropower plants and irrigation projects and derive a Pareto front that contains alternative, optimal solutions, for which improvement of one objective can be achieved only at the expense of another. By visualizing the trade-offs between the conflicting objectives of hydropower and irrigation, we aim to help decision makers understand changes due to different management policies and thus, achieve greater efficiency in water resources management in the Nile region.
机译:人口的不断增长,再加上不断升级的城市化和经济增长,加剧了我们星球上对水,能源和粮食资源的压力。这就迫切需要在水-能源-食品(WEF)联系概念内进行适当的水资源管理。世界经济论坛的关系将水,能源和粮食视为三个相互联系的部门,其复杂的相互作用导致更多的权衡和潜在的冲突。计算模型可用于量化这些相互作用,减少折衷并促进协同作用。我们使用Hydronomeas工具调查了尼罗河上游两个主要水源之一的蓝尼罗河上游流域的水资源。流体力学基于参数化-模拟-优化方法;使用整体方法和多个标准在两个级别上实现了优化。我们为水库,水力发电厂和灌溉项目的UBNR系统分配了各种目标,约束和优先级,并推导了包含替代性最佳解决方案的Pareto阵线,为此,一个目标的改进只能以牺牲另一个目标为代价。通过可视化水电和灌溉目标相互抵触之间的取舍,我们旨在帮助决策者了解由于不同管理政策而引起的变化,从而在尼罗河地区实现更高的水资源管理效率。

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