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Multi-Objective Optimization of Hydropower and Agricultural Development at River Basin Scale

机译:流域规模水电与农业发展的多目标优化

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摘要

The need for achieving efficient, equitable and sustainable use of water resources to meet water demands of different sectors is necessary, particularly in areas where water resources are decreasing. In the basins where water is required for both energy production and irrigation, allocation of water resources must be planned in such a way that both objectives can be achieved. In this research, a simulation-optimization approach has been used to solve the problem of optimal planning at the watershed scale. The water evaluation and planning system (WEAP) simulation model link with the multi-objective particle swarm optimization (MOPSO) model for optimal long term planning at the basin scale. Therefore, the objective functions of the problem are 1) maximize the cultivation area of agricultural development sectors and 2) maximize the energy produced by the hydropower plant. The developed simulation-optimization model was employed in the problem of optimal water resources planning in the Kashkan river basin in the west of Iran. The Pareto front obtained represents the best trade-off between hydropower and agricultural development in the basin and can be used for water-energy-food nexus planning. For example one of the solutions of Pareto front, in addition to an increase of about 8% of the objective function 2 (generated energy), the value of the objective function 1 (cultivation area) is approximately 5 times higher than the results of previous studies. This demonstrates the proper performance of the simulation-optimization model in the optimal allocation and planning of water resources at the basin scale based on the water-energy-food nexus approach.
机译:必须实现对水资源的高效,公平和可持续利用,以满足不同部门的用水需求,特别是在水资源正在减少的地区。在能源生产和灌溉都需要水的流域中,必须以实现两个目标的方式规划水资源分配。在这项研究中,采用模拟优化方法来解决分水岭规模的最优规划问题。水评估和计划系统(WEAP)仿真模型与多目标粒子群优化(MOPSO)模型相链接,可在流域范围内进行最佳的长期规划。因此,问题的客观功能是:1)最大化农业发展部门的耕种面积,以及2)最大化水力发电厂产生的能源。所开发的模拟优化模型被用于伊朗西部克什干河流域的水资源优化规划问题。获得的帕累托前沿代表了该盆地水力发电与农业发展之间的最佳权衡,可用于水-能源-食品关系规划。例如,帕累托锋面的一种解决方案,除了增加了约8%的目标函数2(生成的能量)之外,目标函数1(耕种面积)的值比以前的结果大约高5倍学习。这证明了基于水-能源-食物关系方法的模拟优化模型在流域尺度上水资源的最优分配和规划中的适当性能。

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