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A Min-Max Operating Rule for the Management of a Multipurpose Reservoir
Abstract A risk-averse approach which avoids extreme failures in the management of a multipurpose reservoir is presented and discussed in the paper. The method explicitly requires the real-time forecast of the future inflows to the reservoir. The main advantage of the approach is that it suggests a whole range of possible decisions which guarantee the efficient performance of the system. This allows the manager to choose that release of water which is more in keeping with the additional information he may have and to consider secondary objectives which were not included in the formulation of the problem. The method is applied to the case of Lake Como (Italy). A comparison of the results with historical events indicates that both flooding of the lake shores and water losses could have been significantly reduced.
A Min-Max Operating Rule for the Management of a Multipurpose Reservoir
Abstract A risk-averse approach which avoids extreme failures in the management of a multipurpose reservoir is presented and discussed in the paper. The method explicitly requires the real-time forecast of the future inflows to the reservoir. The main advantage of the approach is that it suggests a whole range of possible decisions which guarantee the efficient performance of the system. This allows the manager to choose that release of water which is more in keeping with the additional information he may have and to consider secondary objectives which were not included in the formulation of the problem. The method is applied to the case of Lake Como (Italy). A comparison of the results with historical events indicates that both flooding of the lake shores and water losses could have been significantly reduced.
A Min-Max Operating Rule for the Management of a Multipurpose Reservoir
Guariso, G. (author) / Orlovski, S. (author) / Rinaldi, S. (author) / Soncini-Sessa, R. (author)
1987-01-01
33 pages
Article/Chapter (Book)
Electronic Resource
English
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