In-depth coverage of the powerful tools available to predict and manage water resource systems Management tools include decision support systems, optimisation methods, optimal control method, and risk methods. Water resource management application of the management tolls include irrigation systems, regional water supply systems, river-reservoir systems, groundwater systems, water supply systems.
In-depth coverage of the powerful tools available to predict and manage water resource systems Management tools include decision support systems, optimisation methods, optimal control method, and risk methods. Water resource management application of the management tolls include irrigation systems, regional water supply systems, river-reservoir systems, groundwater systems, water supply systems.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Larry W. Mays is Professor of Civil and Environmental Engineering at Arizona State University where he was the chair of the department. He was formerly Director of the Center for Research in Water Resources at the University of Texas at Austin where he also held an Engineering Foundation Endowed Professorship. A registered engineer in seven states and a professional hydrologist, he has served as a consultant to many organizations. Professor Mays is author of Water Resources Engineering (John Wily & Sons) and Optimal Control of Hydrosystems (Marcel Dekker), co-author of Applied Hydrology and Hydrosystems Engineering and Mangement (both from McGraw-Hill) and editor-in-chief of the Water Resources Handbook , Hydraulic Design Handbook, Water Distribution Systems Handbook, Stormwater Collection Systems Design Handbook, and the Urban Water Supply Handbook (all from McGraw-Hill). The Urban Water Supply Handbook received the 2002 Honorable Mention in Engineering Award given by the Association of American Publishers. He is also editor-in-chief of Reliability Analysis of Water Distribution Systems (ASCE) and co-editor of Computer Modeling of Free Surface and Pressurized Flow (Kluwer Academic Publishers). Among his honors is a distinguished alumnus award from the University of Illinois at Urbana-Champaign in 1999.
Inhaltsangabe
CONTRIBUTORS PREFACE Chapter 1: Systems Analysis (Larry W. Mays and Yeou-Koung Tung) Chapter 2: Uncertainty and Reliability Analysis (Yeou-Koung Tung) Chapter 3: Regional Water Supply Planning and Capacity Expansion Models (Messele Z. Ejeta and Larry W. Mays) Chapter 4: River-Reservoir System Operation for Sediment Control (John W. Nicklow) Chapter 5: Water Distribution System Operation: Application of Simulated Annealing (Fred E. Goldman and Larry W. Mays) Chapter 6: Optimal Feedback Control of Irrigation Water Delivery Systems (B.T. Wahlin) Chapter 7: Optimal Location of Isolation Valves in Water Distribution Systems: A Reliability/Optimization Approach (Sukru Ozger and Larry W. Mays) Chapter 8: Groundwater Remediation Design Using Simulated Annealing (Richard L. Skaggs and Larry W. Mays) INDEX
CONTRIBUTORS PREFACE Chapter 1: Systems Analysis (Larry W. Mays and Yeou-Koung Tung) Chapter 2: Uncertainty and Reliability Analysis (Yeou-Koung Tung) Chapter 3: Regional Water Supply Planning and Capacity Expansion Models (Messele Z. Ejeta and Larry W. Mays) Chapter 4: River-Reservoir System Operation for Sediment Control (John W. Nicklow) Chapter 5: Water Distribution System Operation: Application of Simulated Annealing (Fred E. Goldman and Larry W. Mays) Chapter 6: Optimal Feedback Control of Irrigation Water Delivery Systems (B.T. Wahlin) Chapter 7: Optimal Location of Isolation Valves in Water Distribution Systems: A Reliability/Optimization Approach (Sukru Ozger and Larry W. Mays) Chapter 8: Groundwater Remediation Design Using Simulated Annealing (Richard L. Skaggs and Larry W. Mays) INDEX
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