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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Byggnadsteknik

    Water Resources Engineering

    AvLarry W. Mays

    Häftad, Engelska, 2024

    1 661 kr

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    E-bok

    585 kr

    Beskrivning

    Modern water conveyance and storage techniques are the product of thousands of years of human innovation; today we rely on that same innovation to devise solutions to problems surrounding the rational use and conservation of water resources, with the same overarching goal: to supply humankind with adequate, clean, freshwater. Water Resources Engineering presents an in-depth introduction to hydrological and hydraulic processes, with rigorous coverage of both core principles and practical applications.The discussion focuses on the engineering aspects of water supply and water excess management, relating water use and the hydrological cycle to fundamental concepts of fluid mechanics, energy, and other physical concepts, while emphasizing the use of up-to-date analytical tools and methods. Now in its Third Edition, this straightforward text includes new links to additional resources that help students develop a deeper, more intuitive grasp of the material, while the depth and breadth of coverage retains a level of rigor suitable for use as a reference among practicing engineers.

    Produktinformation

    • Utgivningsdatum:2024-09-19
    • Mått:203 x 252 x 33 mm
    • Vikt:1 315 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:752
    • Upplaga:3
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119490579

    Utforska kategorier

    • Byggnadsteknik inom Naturvetenskap och teknik

    Innehållsförteckning

    • About the Author iiiAcknowledgments vPreface viChapter 1 Introduction 11.1 Background 11.2 The World’s Freshwater Resources 101.3 Water Use in the United States 141.4 Systems of Units 161.5 The Future of Water Resources 181.6 Water–Energy Nexus 19Chapter 2 Water Resources Sustainability 252.1 What is Water Resources Sustainability? 252.2 Challenges to Water Resources Sustainability 282.3 Surface Water System—The Colorado River Basin 482.4 Groundwater Systems—The Edwards Aquifer, Texas 532.5 Water Budgets 572.6 Examples of Water Resources Unsustainability 63Chapter 3 Hydraulic Processes: Flow and Hydrostatic Forces 733.1 Principles 733.2 Control Volume Approach for Hydrosystems 803.3 Continuity 823.4 Energy 843.5 Momentum 883.6 Pressure and Pressure Forces in Static Fluids 893.7 Velocity Distribution 94Chapter 4 Hydraulic Processes: Pressurized Pipe Flow 994.1 Classification of Flow 994.2 Pressurized (Pipe) Flow 1024.3 Headlosses 1064.4 Forces in Pipe Flow 1164.5 Pipe Flow in Simple Networks 119Chapter 5 Hydraulic Processes: Open-Channel Flow 1275.1 Steady Uniform Flow 1275.2 Specific Energy, Momentum, and Specific Force 1385.3 Steady, Gradually Varied Flow 1485.4 Gradually Varied Flow for Natural Channels 1555.5 Rapidly Varied Flow 1665.6 Discharge Measurement 172Chapter 6 Hydraulic Processes: Groundwater Flow 1836.1 Groundwater Concepts 1836.2 Saturated Flow 1916.3 Steady-State One-Dimensional Flow 1966.4 Steady-State Well Hydraulics 1996.5 Transient Well Hydraulics—Confined Conditions 2056.6 Transient Well Hydraulics—Unconfined Conditions 2156.7 Transient Well Hydraulics—Leaky Aquifer Conditions 2166.8 Boundary Effects: Image Well Theory 2176.9 Simulation of Groundwater Systems 225Chapter 7 Hydrologic Processes 2337.1 Introduction to Hydrology 2337.2 Precipitation (Rainfall) 2437.3 Evaporation 2697.4 Infiltration 277Chapter 8 Surface Runoff 2918.1 Drainage Basins and Storm Hydrographs 2918.2 Hydrologic Losses, Rainfall Excess, and Hydrograph Components 2958.3 Rainfall-Runoff Analysis Using Unit Hydrograph Approach 2998.4 Synthetic Unit Hydrographs 3028.5 S-Hydrographs 3078.6 NRCS (SCS) Rainfall-Runoff Relation 3098.7 Curve Number Estimation and Abstractions 3118.8 NRCS (SCS) Unit Hydrograph Procedure 3188.9 Kinematic-Wave Overland Flow Runoff Model 3228.10 Computer Models for Rainfall-Runoff Analysis 328Chapter 9 Reservoir and Stream Flow Routing 3339.1 Routing 3339.2 Hydrologic Reservoir Routing 3349.3 Hydrologic River Routing 3389.4 Hydraulic (Distributed) Routing 3429.5 Kinematic Wave Model for Channels 3489.6 Muskingum–Cunge Model 3539.7 Implicit Dynamic Wave Model 354Chapter 10 Probability, Risk, and Uncertainty Analysis for Hydrologic and Hydraulic Design 36110.1 Probability Concepts 36110.2 Commonly Used Probability Distributions 36410.3 Hydrologic Design for Water Excess Management 36710.4 Hydrologic Frequency Analysis 37310.5 U.S. Water Resources Council Guidelines for Flood Flow Frequency Analysis 37910.6 Analysis of Uncertainties 38410.7 Risk Analysis: Composite Hydrologic and Hydraulic Risk 38710.8 Computer Models for Flood flow Frequency Analysis 393Chapter 11 Water Distribution 39711.1 Introduction 39711.2 System Components 40911.3 System Configuration and Operation 42611.4 Hydraulics of Simple Networks 42911.5 Pump Systems Analysis 43311.6 Network Simulation 44811.7 Modeling Water Distribution Systems 45911.8 Hydraulic Transients 461Chapter 12 Storm water Control: Storm Sewers and Detention 48112.1 Storm water Management 48112.2 Storm Sewer Systems 48212.3 Storm water Drainage Channels 50912.4 Storm water Detention 517Chapter 13 Storm water Control: Street and Highway Drainage and Culverts 54113.1 Drainage of Street and Highway Pavements 54113.2 Hydraulic Design of Culverts 563Chapter 14 Design of Spillways and Energy Dissipation for Flood Control Storage and Conveyance Systems 58114.1 Hydrologic Considerations 58114.2 Dams 58214.3 Spillways 59314.4 Hydraulic-Jump-Type Stilling Basins and Energy Dissipators 616Chapter 15 Sedimentation and Erosion Hydraulics 63715.0 Introduction 63715.1 Properties of Sediment 63915.2 Bed Forms and Flow Resistance 64715.3 Sediment Transport 65215.4 Bed Load Formulas 65815.5 Suspended Load 66315.6 Total Sediment Load (Bed Material Load Formulas) 66615.7 Bridge Scour 674Supplemental Chapter 15 section 15.8 (Watershed sediment Yield), 15.9 (Reservoir Sedimentation) and 15.10 (Stream Stability at Highway Structures) are available to Instructors for Distribution 15-1Chapter 16 Water Resources Management for Sustainability 67916.1 Integrated Water Resources Management for Sustainability 67916.2 Water Law: Surface and Groundwater Management Aspects 68216.3 Sustainable Water Supply Methodologies for Arid and Semi-Arid Regions 68816.4 Water Resources Economics 70116.5 Water Resource Systems Analysis 70816.6 Life Cycle Assessment (LCA) 71416.7 Water-Wise Cities in the Future 717Chapter 17 Water Withdrawals and Uses (Supplemental Chapter Available to Instructors for Distribution) 17-1Chapter 18 Water for Hydroelectric Generation (Supplemental Chapter Available to Instructors for Distribution) 18-1Chapter 19 Flood Control (Supplemental Chapter Available to Instructors for Distribution) 19-1Appendix A Newton–Raphson Method 723Index 727