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Multi-Objective Optimization of Integrated Surface and Groundwater Resources Under the Clean Development Mechanism

机译:清洁开发机制下集成表面和地下水资源的多目标优化

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Acquiring sustainable water resources for water-based development of countries is the experts concern in this field, who seek to follow the clean development mechanism (CDM) regulations and overcome water crisis through integrated water resources management (IWRM). The Great Karun River basin is one of the major basins in the Middle East. This basin, containing six of the largest reservoir dams with a cumulative power plant capacity of more than 10,500 MW generates about 93% of hydropower of Iran. The water balance of the aquifer in the study area was simulated using MODFLOW model while water resources and surface water reserves were simulated by the water evaluation and planning (WEAP) model. A separate simulation was performed with each of two models and the results of two models were coupled using a link file. The multi-objective function optimization process including the maximized supply of demands and hydropower and the minimized aquifer drawdown was completed using non-dominated sorting genetic algorithm (NSGA-II). All effective system components, such as inter-basin water transfer, integrated use of water resources, variation of irrigation network efficiencies, and the effect of water shortage were studied and analyzed under the targeted scenarios. Finally, the best scenario, which was capable to supply the future needs until time horizon of 2040 was planned for the basin considering minimization of aquifer drawdown and optimal generation of hydropower resulting in a maximum decrease in emission of greenhouse gases.
机译:获得国家水资源发展的可持续水资源是该领域的专家关注,他试图遵循清洁发展机制(CDM)条例,通过综合水资源管理(IWRM)克服水危机。伟大的Karun河流域是中东主要盆地之一。该盆地包含累积电厂容量超过10,500兆瓦的六个最大水库坝产生了大约93%的伊朗水电。使用Modflow模型模拟了研究区域中含水层的水平衡,而水资源评估和规划(WEAP)模型模拟​​水资源和地表水储量。使用两个模型中的每一个执行单独的模拟,并且使用链接文件耦合两种模型的结果。使用非主导的分类遗传算法(NSGA-II)完成了包括最大化需求和水电和最小化含水层绘制的多目标函数优化过程。所有有效的系统组件,如盆地间水分转移,综合使用水资源,灌溉网络效率的变化以及水资源短缺的影响,并在目标方案下分析。最后,在考虑到最小化含水层的降低和水电的最佳产生,计划为2040年的时间范围提供最佳情景,直到2040年的时间范围,导致温室气体排放最大减少。

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