Hydraulic Design Handbook

Overview

* Easy-to-follow guide to data otherwise offered in several difficult federal handbooks
* Includes all relevant regulations from the EPA, NOAA, Federal Highway Administration, and other public agencies
* Covers hydraulic design for water supply, water excess management, and environmental considerations
* Features the contributions of experts in specific hydraulic design areas
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Overview

* Easy-to-follow guide to data otherwise offered in several difficult federal handbooks
* Includes all relevant regulations from the EPA, NOAA, Federal Highway Administration, and other public agencies
* Covers hydraulic design for water supply, water excess management, and environmental considerations
* Features the contributions of experts in specific hydraulic design areas
Read More Show Less

Product Details

  • ISBN-13: 9780070411524
  • Publisher: McGraw-Hill Professional
  • Publication date: 7/30/1999
  • Pages: 1024
  • Product dimensions: 6.00 (w) x 9.10 (h) x 2.10 (d)

Meet the Author

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.
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Table of Contents

CONTRIBUTORS

PREFACE

ACKNOWLEDGMENTS

Chapter 1: Introduction

Chapter 2: Hydraulics of Pressurized Flow

Chapter 3: Hydraulics of Open-Channel Flow

Chapter 4: Subsurface Flow and Transport

Chapter 5: Environmental Hydraulics

Chapter 6: Sedimentation and Erosion Hydraulics

Chapter 7: Risk/Reliability-Based Hydraulics Engineering Design

Chapter 8: Hydraulics Design for Energy Generation

Chapter 9: Hydraulics of Water Distribution Systems

Chapter 10: Pump System Hydraulic Design

Chapter 11: Water Distribution System Design

Chapter 12: Hydraulic Transient Design for Pipeline Systems

Chapter 13: Hydraulic Design of Drainage for Highways

Chapter 14: Hydraulic Design of Urban Drainage Systems

Chapter 15: Hydraulics Design of Culverts and Highway Structures

Chapter 16: Hydraulic Design of Flood Control Channels

Chapter 17: Hydraulic Design of Spillways

Chapter 18: Hydraulic Design of Stilling Basins and Energy Dissipators

Chapter 19: Floodplain Hydraulics

Chapter 20: Flow Transitions and Energy Dissipators for Culverts and Channels

Chapter 21: Hydraulic Design of Flow Measuring Structures

Chapter 22: Water and Wastewater Treatment Plant Hydraulics

Chapter 23: Hydraulic Design for Groundwater Contamination

Chapter 24: Artificial Recharge of Groundwater: Systems, Design and Management

INDEX
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