Optimal Monthly Operation of Hydrosystems

Optimal Monthly Operation of Hydrosystems
Author: Jan Christopher Grygier
Publisher: Ann Arbor, Mich. : University Microfilms International
Total Pages: 408
Release: 1983
Genre: Hydroelectric power plants
ISBN:

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Optimal Control of Hydrosystems

Optimal Control of Hydrosystems
Author: Larry W. Mays
Publisher: CRC Press
Total Pages: 369
Release: 2018-02-06
Genre: Science
ISBN: 1351092103

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"Combines the hydraulic simulation of physical processes with mathematical programming and differential dynamic programming techniques to ensure the optimization of hydrosystems. Presents the principles and methodologies for systems and optimal control concepts; features differential dynamic programming in developing models and solution algorithms for groundwater, real-time flood and sediment control of river-reservoir systems, and water distribution systems operations, as well as bay and estuary freshwater inflow reservoir oprations; and more."

Optimal Control of Hydrosystems

Optimal Control of Hydrosystems
Author: Larry W. Mays
Publisher: CRC Press
Total Pages: 385
Release: 2018-02-06
Genre: Science
ISBN: 1351083651

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"Combines the hydraulic simulation of physical processes with mathematical programming and differential dynamic programming techniques to ensure the optimization of hydrosystems. Presents the principles and methodologies for systems and optimal control concepts; features differential dynamic programming in developing models and solution algorithms for groundwater, real-time flood and sediment control of river-reservoir systems, and water distribution systems operations, as well as bay and estuary freshwater inflow reservoir oprations; and more."

Hydrosystems Engineering and Management

Hydrosystems Engineering and Management
Author: Larry W. Mays
Publisher: Water Resources Publication
Total Pages: 550
Release: 2002
Genre: Business & Economics
ISBN: 9781887201322

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This book is intended to be a textbook for students of water resources engineering and management. It is an introduction to methods used in hydrosystems for upper level undergraduate and graduate students. The material can be presented to students with no background in operations research and with only an undergraduate background in hydrology and hydraulics. A major focus is to bring together the use of economics, operations research, probability and statistics with the use of hydrology, hydraulics, and water resources for the analysis, design, operation, and management of various types of water projects. This book is an excellent reference for engineers, water resource planners, water resource systems analysts, and water managers. This book is concerned with the mathematical modeling of problems in water project design, analysis, operation, and management. The quantitative methods include: (a) the simulation of various hydrologic and hydraulic processes; (b) the use of operations research, probability and statistics, and economics. Rarely have these methods been integrated in a systematic framework in a single book like Hydrosystems Engineering and Management. An extensive number of example problems are presented for ease in understanding the material. In addition, a large number of end-of-chapter problems are provided for use in homework assignments.

Optimal Long-Term Operation of Electric Power Systems

Optimal Long-Term Operation of Electric Power Systems
Author: G.S. Christensen
Publisher: Springer Science & Business Media
Total Pages: 314
Release: 2012-12-06
Genre: Mathematics
ISBN: 1468454935

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This book deals with a very important problem in power system planning for countries in which hydrogeneration accounts for the greatest part of the system power production. During the past thirty years many techniques have been developed to cope with the long-term operation of hydro reser voirs. These techniques have been discussed in a number of publications, but they have not until now been documented in book form. This book is intended as the foundation for a special graduate course dealing with aspects of electrical engineering, operational research, water resource research, and applied mathematics. It may also be used for self study by practicing personnel involved in the planning and operation of hydroelectric power systems for utilities, consulting groups, and government regulatory agencies. The book consists of eight chapters. Chapter 1 reviews the historical developments in the field, discusses briefly all techniques used to solve the problem, and summarizes the modeling of hydroplants for long-term operation studies. At the end of the chapter we present in detail an outline of the book.

Decision Making for Hydrosystems

Decision Making for Hydrosystems
Author: T. E. Unny
Publisher: Littleton, Colo. : Water Resources Publications
Total Pages: 620
Release: 1982
Genre: Decision making
ISBN:

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Systems Analysis for Water Resources Management

Systems Analysis for Water Resources Management
Author: International Association of Hydrological Sciences. Scientific Assembly
Publisher:
Total Pages: 354
Release: 1989
Genre: System analysis
ISBN:

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Dynamic Programming Based Operation of Reservoirs

Dynamic Programming Based Operation of Reservoirs
Author: K. D. W. Nandalal
Publisher: Cambridge University Press
Total Pages: 125
Release: 2007-05-10
Genre: Science
ISBN: 1139464957

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Dynamic programming is a method of solving multi-stage problems in which decisions at one stage become the conditions governing the succeeding stages. It can be applied to the management of water reservoirs, allowing them to be operated more efficiently. This is one of the few books dedicated solely to dynamic programming techniques used in reservoir management. It presents the applicability of these techniques and their limits on the operational analysis of reservoir systems. The dynamic programming models presented in this book have been applied to reservoir systems all over the world, helping the reader to appreciate the applicability and limits of these models. The book also includes a model for the operation of a reservoir during an emergency situation. This volume will be a valuable reference to researchers in hydrology, water resources and engineering, as well as professionals in reservoir management.