Please use this identifier to cite or link to this item: http://117.252.14.250:8080/jspui/handle/123456789/5267
Title: 202-Optimisation of Hydropower in a Multi-Objective Context.
Authors: Rosbjerg, Dan
Ngo, Long Le
Madsen, Henrik
Keywords: Water and Energy
Optimisation of Hydropower
Multi Objective Context
Issue Date: 2009
Publisher: Allied Publishers Pvt. Limited, New Delhi
Abstract: Application of optimisation techniques to reservoir operation has become a major focus of water resources planning and management. Traditionally, reservoir operation has been based on heuristic procedures, embracing rule curves and, to a certain extent, subjective judgements by the operator. More efficient solutions, however, can be obtained by coupling a simulation model with an optimisation algorithm for optimising reservoir operation in a multi-objective context. The focus of the present study is the operation of the Hoa Binh reservoir in Vietnam, considering hydropower production and downstream fl ood control including the protection of the capital Hanoi. Using the hydrodynamic simulation model MIKE 11, the existing operation rules were incorporated in the model, and the reservoir performance evaluated in comparison with alternative operation strategies suggesting a scope for improvement of both hydropower production and downstream flood control. Subsequently, the Shuffled Complex Evolution (SCE) algorithm was coupled with MIKE 11, and through Pareto optimisation it was shown that choosing a balanced optimum would result in an increase of the hydropower production without compromising the downstream flood protection. Finally, the possibility of using real-time information on forecasted reservoir inflows to improve short-term operation was addressed, and it was indicated that flexible, real-time optimisation procedures can further improve the performance of the reservoir operation in comparison to a strict application of the optimised rule curves.
URI: http://117.252.14.250:8080/jspui/handle/123456789/5267
Appears in Collections:Proceedings of the International Conference on Water, Environment, Energy and Society (WEES-2009), 12-16 January 2009 at New Delhi, Vol.-4

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