Water Resource Systems Management Tools / Edition 1

Water Resource Systems Management Tools / Edition 1

by Larry W. Mays
ISBN-10:
0071443819
ISBN-13:
9780071443814
Pub. Date:
11/05/2004
Publisher:
McGraw Hill LLC
ISBN-10:
0071443819
ISBN-13:
9780071443814
Pub. Date:
11/05/2004
Publisher:
McGraw Hill LLC
Water Resource Systems Management Tools / Edition 1

Water Resource Systems Management Tools / Edition 1

by Larry W. Mays

Hardcover

$179.0
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Overview

Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.




This is a unique, integrated approach to water resource systems management and planning. The book provides methods for analyzing water resource needs, modeling, supply reliability, irrigation optimization, and much more. With more and more attention being given to the worldwide interest in sustainability, to the effects of global climate change on future water resources operation and management, as well as public health issues, Dr. Mays has gathered together leading experts in their respective fields offering the latest information on the subject. A fresh approach offering insight for the present generation within the water resources community.

Product Details

ISBN-13: 9780071443814
Publisher: McGraw Hill LLC
Publication date: 11/05/2004
Series: McGraw-Hill Professional Engineering Ser.
Pages: 320
Product dimensions: 7.60(w) x 9.20(h) x 1.00(d)

About the Author

Larry. W. Mays, Ph.D., PE, P.H., is Professor of Civil and Environmental Engineering at Arizona State University and former chair of the department. He is the former 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 professional engineer in seven states and a registered professional hydrologist, he has served as a consultant to many organizations. Professor Mays is the author of Water Resources Engineering (John Wiley & Sons, Inc.) and Optimal Control of Hydrosystems (Marcel Dekker, Inc.), coauthor of Applied Hydrology and Hydrosystems Engineering and Management (both from McGraw-Hill), co-author of Groundwater Hydrology (John Wiley & Sons, Inc.) and editor-in-chief of the Water Resources Handbook, Hydraulic Design Handbook, Water Distribution Systems Handbook, Stormwater Collection System Design Handbook, Urban Water Supply Handbook, Urban Water Supply Management Tools, Urban Stormwater Management Tools, and Water Supply Systems Security (all from McGraw-Hill). He was also the editor-in-chief of the Reliability Analysis of Water Distribution Systems (ASCE) and coeditor of Computer Modeling of Free Surface and Pressurized Flow (Kluwer Academic Publishers). The Urban Water Supply Handbook received the 2002 Honorable Mention in Engineering Award, given by the Association of American Publishers. Among his honors include a distinguished alumnus award from the University of Illinois at Urbana-Champaign in 1999. He lives in Scottsdale, Arizona and Pagosa Springs, Colorado.

Table of Contents

Contributorsvii
Prefaceix
Chapter 1Systems Analysis1
1.1Systems Concept1
1.2Linear Programming (LP)3
1.3Nonlinear Programming (NLP)8
1.4Dynamic Programming (DP)15
1.5Optimal Control23
1.6Interfacing Optimizers with Process Simulators26
1.7Multiobjective Programming27
1.8Global Optimization Techniques32
1.9Selected Applications in Water Resources37
References42
Chapter 2Uncertainty and Reliability Analysis1
2.1Introduction1
2.2Review of Pertinent Probability and Statistical Theories3
2.3Methods for Uncertainty Analysis13
2.4Load Resistance Interference Reliability Analysis23
2.5Reliability Analysis: Time-to-Failure Analysis33
2.6Monte Carlo Simulation38
2.7System Reliability43
2.8Risk-Based Design of Water Resources Systems50
References57
Chapter 3Regional Water Supply Planning and Capacity Expansion Models1
3.1Introduction1
3.2Model Formulations2
3.3Applications to the Rio Grande Project and the City of El Paso Water Supply10
3.4Model Results28
References34
Chapter 4River-Reservoir System Operation for Sediment Control1
4.1Problem Statement1
4.2Problem Formulation2
4.3Solution Techniques5
4.4Example Applications8
Appendix 4.ASALQR Algorithm13
Appendix 4.BGenetic Algorithm17
References18
Chapter 5Water Distribution System Operation: Application of Simulated Annealing1
5.1Introduction1
5.2General Problem Statement2
5.3Solution Methodology3
5.4Development of Software7
5.5Applications8
5.6Summary and Conclusions14
References15
Chapter 6Optimal Feedback Control of Irrigation Water Delivery Systems1
6.1Introduction1
6.2Irrigation Water Delivery Systems2
6.3Control of Irrigation Water Delivery Systems3
6.4Basic Control Definitions8
6.5Types of Automatic Control10
6.6Integrator-Delay Model (Process Model)13
6.7Fundamentals of Automatic Control Systems17
6.8Optimal Feedback Control Of Irrigation Water Delivery Systems24
6.9Overall Control Schemes for Irrigation Water Delivery Systems35
References36
Chapter 7Optimal Location of Isolation Valves in Water Distribution Systems: A Reliability/Optimization Approach1
7.1Introduction1
7.2Demand-Driven Analysis versus Pressure-Driven Analysis3
7.3Semi-Pressure-Driven Analysis (SPDA) Framework8
7.4Reliability Models11
7.5Optimization Model15
7.6Example Application of Reliability/Optimization Model22
References25
Chapter 8Groundwater Remediation Design Using Simulated Annealing1
8.1Introduction1
8.2Enhanced Annealing3
8.3Annealing with Directional Search6
8.4Annealing with Memory8
8.5Memory Components11
8.6Overall Enhanced Annealing Algorithm12
8.7Application of Algorithm: N-Springs Site Description12
8.8Summary and Conclusions22
References23
Index1
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