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Hydrosystems engineering and management
Larry W. Mays,Yeou-Koung Tung +1 more
TLDR
Economics for hydrosystems linear programming with applications to hydro systems dynamic and nonlinear programming with application to hydro systems uncertainty and reliability analysis of water demand forecasting surface water systems water distribution systems hydrology and hydraulics for water excess control urban collection, conveyance and storage systems floodplain management systems surface water system for flood control.Abstract:
Economics for hydrosystems linear programming with applications to hydrosystems dynamic and nonlinear programming with applications to hydrosystems uncertainty and reliability analysis of hydrosystems water demand forecasting surface water systems water distribution systems hydrology and hydraulics for water excess control urban collection, conveyance and storage systems floodplain management systems surface water system for flood control.read more
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Optimal Operation of Multireservoir Systems: State-of-the-Art Review
TL;DR: Application of heuristic programming methods using evolutionary and genetic algorithms are described, along with application of neural networks and fuzzy rule-based systems for inferring reservoir system operating rules, to assess the state of the art in optimization of reservoir system management and operations.
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Reservoir‐System Simulation and Optimization Models
TL;DR: A broad array of computer models have been developed for evaluating reservoir operations as discussed by the authors, and selecting a modeling and analysis approach for a particular application depends upon the characteristics of the reservoir characteristics.
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Network with degradable links: capacity analysis and design
Hong Kam Lo,Yeou-Koung Tung +1 more
TL;DR: In this article, the authors developed an approach to model network performance when its link capacities are subject to stochastic degradations, as in the form of day-to-day traffic incidents, which cause travel time variability.
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Harmony Search Optimization: Application to Pipe Network Design
TL;DR: Harmony and innovation are brought together as in music to devise a search pattern that can identify a large number of local optima in pipe network design and a minimum power loss criterion is introduced to enhance feasibility.