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Application of Cluster Analysis for Finding Operational Patterns of Multireservoir System during Transition Period

机译:聚类分析在过渡期多水库系统运行模式寻找中的应用

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Operational objectives and/or constraints of a reservoir system may need to be shifted at certain periods (i.e., transition periods) due to seasonal considerations of human interest and ecological benefits. Despite the fact that operational schemes in the transition periods are critical and of great interest to reservoir operation practice, the problem has received little attention in the literature. This paper presents a study on cluster analysis for identifying patterns of operational schemes during transition periods. The test case corresponds to ten major reservoirs of the Federal Columbia River Power System (FCRPS) in the United States. The operation horizon consists of two weeks during which the objectives of the reservoir system are shifted based on seasonal consideration for fish migration and survival. An optimization model based on an evolutionary algorithm is used to derive the optimal operational schemes under various inflow scenarios. A K-Spectral Centroid algorithm (K-SC) is applied to the resulting operational schemes to find clusters of the schemes based on similarities of their temporal shapes. By investigating the relations between the clusters and the inflow scenarios, general patterns of operational schemes are identified. The analyses offer insights into the operational schemes during the transition period and broaden the understanding of short-term reservoir operation with shifting operational objectives. (C) 2017 American Society of Civil Engineers.
机译:由于人类利益和生态效益的季节性考虑,可能需要在某些时期(即过渡时期)改变储层系统的运行目标和/或约束条件。尽管过渡时期的作业方案是至关重要的,并且对油藏作业实践很感兴趣,但该问题在文献中很少受到关注。本文提出了一项关于聚类分析的研究,以识别过渡时期的运营计划模式。该测试案例对应于美国联邦哥伦比亚河电力系统(FCRPS)的十个主要水库。作业周期由两个星期组成,在此期间,根据季节性鱼类迁移和生存的考虑来改变水库系统的目标。使用基于进化算法的优化模型来推导各种流入情景下的最优运行方案。将K谱质心算法(K-SC)应用于所得的操作方案,以根据其时间形状的相似性找到方案的群集。通过研究集群与流入情景之间的关系,确定了运行方案的一般模式。这些分析为过渡期间的运营计划提供了见识,并随着变化的运营目标扩大了对短期水库运营的理解。 (C)2017年美国土木工程师学会。

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