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Modeling of Multi-Reservoir Systems Operation in the Chao Phraya River Basin

机译:湄南河流域多水库系统运行模型

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Reservoir is one of water management facilities. The role of the reservoir has become prominent in recent years due to increased demand for water, intensified pressure on limited water resources, more frequent extreme weather, and heightened degree of climate change. The management of multiple and multi-purpose reservoir systems is complex as it involves the issues of dimensionalities, nonlinearities and conflicts between different objectives. Optimization and simulation models have been used as a tool for providing quantitative information regarding optimal reservoir operation. This research demonstrates the use of optimization techniques to improve water allocation for multiple and multi-purpose reservoir systems. The optimal reservoir releases were determined by linear programing using IBM ILOG CPLEX Optimization Studio software. The objective function was developed to minimize water deficit in dry years under the constraints of reservoir storage, reservoir continuity, and water balance at each node of the river network. Two modeling approaches including time horizon and non-time horizon were applied to a case study of the Lower Chao Phraya River basin which is characterized by two reservoirs and a number of control structures along the channels. When compared to non- time horizon, the time horizon gave higher accuracy of the results. This suggested that using time horizon framework could provide beneficial support for better reservoir management and operational efficiency.
机译:水库是水管理设施之一。近年来,由于对水的需求增加,对有限水资源的压力不断增加,极端天气更加频繁以及气候变化程度加剧,水库的作用日益突出。多用途和多用途水库系统的管理很复杂,因为它涉及到维度,非线性和不同目标之间的冲突问题。优化和模拟模型已用作提供有关最佳油藏运行的定量信息的工具。这项研究证明了使用优化技术来改善多用途和多用途水库系统的水分配。最佳油藏释放量是使用IBM ILOG CPLEX Optimization Studio软件通过线性编程确定的。开发目标函数的目的是在水库存储,水库连续性和河网每个节点的水平衡的约束下,将干旱年份的缺水降至最低。以湄公河下游流域为例,采用时间地平线和非时间地平线两种建模方法,以两个水库和沿河道的许多控制结构为特征。与非时间范围相比,时间范围可提供更高的结果准确性。这表明使用时间范围框架可以为更好的水库管理和运营效率提供有益的支持。

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