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Mixed Integer Nonlinear Programming Model for Sustainable Water Management in Macroscopic Systems: Integrating Optimal Resource Management to the Synthesis of Distributed Treatment Systems

机译:宏观系统可持续水管理混合整数非线性规划模型:将最优资源管理整合到分布式治疗系统的合成

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摘要

Recognizing the growing pressure on water resources, the literature reports several efforts in the area of mathematical programming to deal with the management of industrial and macroscopic water systems. This paper presents a mathematical programming model which integrates two strategies for sustainable water management. On the one hand, the model allows finding an optimal schedule for the distribution and storage of natural and alternative water sources to satisfy the demands of different users in a macroscopic system, while maintaining sustainable levels of water in the natural water resources. On the other hand, optimal decisions also involve the number, capacity, type, and location of treatment units in a macroscopic system. Our approach results in a mixed integer linear programming (MINLP) multiperiod model which has been solved through the GAMS modeling environment. A case study with different scenarios shows the scope of the proposed approach and the significance of the results.
机译:识别对水资源不断增长的压力,文献报告了数学规划领域的几项努力,以应对工业和宏观水系统的管理。本文介绍了一个数学编程模型,整合了两种可持续水管理策略。一方面,该模型允许寻找自然和替代水源的分布和储存的最佳时间表,以满足宏观系统中不同用户的需求,同时保持天然水资源的可持续水平。另一方面,最佳决策还涉及宏观系统中治疗单元的数量,容量,类型和位置。我们的方法导致混合整数线性编程(MINLP)多级模型通过GAMS建模环境解决。具有不同情景的案例研究显示了所提出的方法的范围和结果的重要性。

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