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Titlebook: Hydrological Dimensioning and Operation of Reservoirs; Practical Design Con Imre V. Nagy,Kofi Asante-Duah,Istvan Zsuffa Book 2002 Springer

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Book 2002ns of water resources distribution and requirements. In fact, the different - often contradictory - and increasing demands on water resources utilization and control usually can be fulfilled only by building multi-purpose reservoir systems. In this way, the available water resources can be exploited
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Systems Approach in the Hydrologic Design and Operation of Storage Reservoirs, elements under one umbrella — with an ultimate goal of improving system performance. The systems approach is generally defined as an orderly way of looking at all angles of a complex problem, with emphasis on the interrelationship rather than the analysis of separate parts of a given phenomenon (Al
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Hydrologic Analysis of Flood Flows, to ensure a sustained human and ecological life. The purpose of flood control is to eliminate or reduce damage caused by the flooding of areas adjacent to rivers, or by the overtopping of engineering structures like dams, embankments or bridges. Flood control may be accomplished by means of the fol
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Methods of Approach for Designing Optimal Storage Capacities and Operational Strategies for Multirequirements but also from the hydrologic point of view. Procedures used for rapid assessment — usually designated as . — involve making simplifying assumptions for ease of application; as a consequence, such procedures often result in a reduced accuracy. After using preliminary design techniques to e
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Determination of the Optimal Reservoir Storage Capacity and Operational Parameters for a River Dam,system units/components, inputs, outputs, and operating policies that ‘extremizes’ (i.e., maximizes or minimizes, as appropriate) the objective function — thus fulfilling the overall objective better than any other combination. The problem of finding the optimal capacities for the components in mult
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