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1995280623PN. New. 1995. Soft Cover. Date is original print. This is a reprint edition . PN paperback
1996289779PN. New. 1996. Soft Cover. Date is original print. This is a reprint edition . PN paperback
1996289777PN. New. 1996. Soft Cover. Date is original print. This is a reprint edition . PN paperback
Quarto in red illus wraps; xv, 761 pages : illustrations ; 26 cmIncludes bibliographical references and index. Appears to be a 2004 printing of the 2001 first edition, produced for the Asia market. || Contents: 1.2; World's FreshWater Resources; 4 --; 1.3; Water Use in the United States; 6 --; 1.4; Systems of Units; 8 --; 1.5; What Is Water?; 10 --; 1.6; Future of Water Resources; 12 --; Chapter 2; Principles of Flow in Hydrosystems; 15 --; 2.1; Properties Involving Mass or Weight of Water; 15 --; 2.2; Viscosity; 17 --; 2.3; Elasticity; 18 --; 2.4; Pressure and Pressure Variation; 19 --; 2.5; Surface Tension; 21 --; 2.6; Flow Visualization; 23 --; 2.7; Laminar and Turbulent Flow; 24 --; 2.8; Discharge; 25 --; Chapter 3; Flow Processes and Hydrostatic Forces; 29 --; 3.1; Control Volume Approach for Hydrosystems; 29 --; 3.2; Continuity; 32 --; 3.3; Energy; 34 --; 3.4; Momentum; 38 --; 3.5; Pressure and Pressure Forces in Static Fluids; 39 --; 3.5.1; Hydrostatic Forces; 39 --; 3.5.2; Buoyancy; 43 --; 3.6; Velocity Distribution; 44 --; Chapter 4; Hydraulic Processes: Pressurized Pipe Flow; 49 --; 4.1; Classification of Flow; 49 --; 4.2; Pressurized (Pipe) Flow; 52 --; 4.2.1; Energy Equation; 52 --; 4.2.2; Hydraulic and Energy Grade Lines; 56 --; 4.3; Headlosses; 56 --; 4.3.1; Shear-Stress Distribution of Flow in Pipes; 56 --; 4.3.2; Velocity Distribution of Flow in Pipes; 58 --; 4.3.3; Headlosses from Pipe Friction; 61 --; 4.3.4; Form (Minor) Losses; 63 --; 4.4; Forces in Pipe Flow; 70 --; 4.5; Pipe Flow in Simple Networks; 73 --; 4.5.1; Series Pipe Systems; 73 --; 4.5.2; Parallel Pipe Systems; 75 --; 4.5.3; Branching Pipe Flow; 78 --; 4.6; Measurement of Flowing Fluids in Pressure Conduits; 79 --; 4.6.1; Measurement of Static Pressure; 79 --; 4.6.2; Measurement of Velocity; 80 --; 4.6.3; Measurement of Discharge; 81 --; Chapter 5; Hydraulic Processes: Open-Channel Flow; 85 --; 5.1; Steady Uniform Flow; 85 --; 5.1.1; Energy; 85 --; 5.1.2; Momentum; 88 --; 5.1.3; Best Hydraulic Sections for Uniform Flow in Nonerodible Channels; 94 --; 5.2; Specific Energy, Momentum, and Specific Force; 95 --; 5.2.1; Specific Energy; 95 --; 5.2.2; Momentum; 101 --; 5.2.3; Specific Force; 102 --; 5.3; Steady, Gradually Varied Flow; 105 --; 5.3.1; Gradually Varied Flow Equations; 105 --; 5.3.2; Water Surface Profile Classification; 108 --; 5.4; Gradually Varied Flow for Natural Channels; 111 --; 5.4.1; Development of Equations; 111 --; 5.4.2; Energy Correction Factor; 114 --; 5.4.3; Application for Water Surface Profile; 118 --; 5.5; Rapidly Varied Flow; 123 --; 5.6; Discharge Measurement; 128 --; 5.6.1; Weir; 128 --; 5.6.2; Flumes; 132 --; 5.6.3; Stream Flow Measurement: Velocity-Area-Integration Method; 135 --; Chapter 6; Hydraulic Processes: Groundwater Flow; 141 --; 6.1; Groundwater Concepts; 141 --; 6.2; Saturated Flow; 150 --; 6.2.1; Governing Equations; 150 --; 6.2.2; Flow Nets; 152 --; 6.3; Steady-State One-Dimensional Flow; 154 --; 6.4; Steady-State Well Hydraulics; 157 --; 6.4.1; Flow to Wells; 157 --; 6.4.2; Confined Aquifers; 158 --; 6.4.3; Unconfined Aquifers; 161 --; 6.5; Transient Well Hydraulics--Confined Conditions; 162 --; 6.5.1; Nonequilibrium Well Pumping Equation; 162 --; 6.5.2; Graphical Solution; 165 --; 6.5.3; Cooper-Jacob Method of Solution; 167 --; 6.6; Transient Well Hydraulics--Unconfined Conditions; 172 --; 6.7; Transient Well Hydraulics--Leaky Aquifer Conditions; 173 --; 6.8; Boundary Effects: Image Well Theory; 174 --; 6.8.1; Barrier Boundary; 175 --; 6.8.2; Recharge Boundary; 178 --; 6.8.3; Multiple Boundary Systems; 179 --; 6.9; Simulation of Groundwater Systems; 181 --; 6.9.1; Governing Equations; 181 --; 6.9.2; Finite Difference Equations; 182 --; 6.9.3; MODFLOW; 186 --; Chapter 7; Hydrologic Processes; 191 --; 7.1; Introduction to Hydrology; 191 --; 7.1.1; What Is Hydrology?; 191 --; 7.1.2; Hydrologic Cycle; 191 --; 7.1.3; Hydrologic Systems; 193 --; 7.1.4; Atmospheric and Ocean Circulation; 199 --; 7.2; Precipitation (Rainfall); 202 --; 7.2.1; Precipitation Formation and Types; 202 --; 7.2.2; Rainfall Variability; 204 --; 7.2.3; Disposal of Rainfall on a Watershed; 212 --; 7.2.4; Design Storms; 212 --; 7.2.5; Estimated Limiting Storms; 224 --; 7.3; Evaporation; 227 --; 7.3.1; Energy Balance Method; 228 --; 7.3.2; Aerodynamic Method; 231 --; 7.3.3; Combined Method; 232 --; 7.4; Infiltration; 233 --; 7.4.1; Unsaturated Flow; 233 --; 7.4.2; Green-Ampt Method; 237 --; 7.4.3; Other Infiltration Methods; 243 --; Chapter 8; Surface Runoff; 247 --; 8.1; Drainage Basins; 247 --; 8.2; Hydrologic Losses and Rainfall Excess; 251 --; 8.3; Rainfall-Runoff Analysis Using Unit Hydrograph Approach; 253 --; 8.4; Synthetic Unit Hydrographs; 256 --; 8.5; S-Hydrographs; 259 --; 8.6; SCS Rainfall-Runoff Relation; 262 --; 8.7; Curve Number Estimation and Abstractions; 263 --; 8.7.1; Antecedent Moisture Conditions; 263 --; 8.7.2; Soil Group Classification; 264 --; 8.7.3; Curve Numbers; 267 --; 8.8; SCS Unit Hydrograph Procedure; 270 --; 8.8.1; Time of Concentration; 271 --; 8.8.2; Time to Peak; 273 --; 8.8.3; Peak Discharge; 273 --; 8.9; Kinematic-Wave Overland Flow Runoff Model; 274 --; 8.10; Computer Models for Rainfall-Runoff Analysis; 280 --; Chapter 9; Reservoir and Stream Flow Routing; 283 --; 9.1; Routing; 283 --; 9.2; Hydrologic Reservoir Routing; 284 --; 9.3; Hydrologic River Routing; 288 --; 9.4; Hydraulic (Distributed) Routing; 292 --; 9.4.1; Unsteady Flow Equations: Continuity Equation; 293 --; 9.4.2; Momentum Equation; 295 --; 9.5; Kinematic Wave Model for Channels; 298 --; 9.5.1; Kinematic Wave Equations; 298 --; 9.5.2; U.S. Army Corps of Engineers HEC-1 Kinematic Wave Model for Overland Flow and Channel Routing; 300 --; 9.5.3; KINEROS Channel Flow Routing Model; 302 --; 9.5.4; Kinematic Wave Celerity; 302 --; 9.6; Muskingum-Cunge Model; 303 --; 9.7; Implicit Dynamic Wave Model; 304 --; Chapter 10; Probability, Risk, and Uncertainty Analysis for Hydrologic and Hydraulic Design; 309 --; 10.1; Probability Concepts; 309 --; 10.2; Commonly Used Probability Distributions; 312 --; 10.2.1; Normal Distribution; 312 --; 10.2.2; Log-Normal Distribution; 312 --; 10.3; Hydrologic Design for Water Excess Management; 315 --; 10.3.1; Hydrologic Design Scale; 315 --; 10.3.2; Hydrologic Design Level (Return Period); 317 --; 10.3.3; Hydrologic Risk; 317 --; 10.3.4; Hydrologic Data Series; 318 --; 10.4; Hydrologic Frequency Analysis; 320 --; 10.5; U.S. Water Resources Council Guidelines for Flood Flow Frequency Analysis; 326 --; 10.5.1; Procedure; 326 --; 10.5.2; Testing for Outliers; 328 --; 10.6; Analysis of Uncertainties; 330 --; 10.7; Risk Analysis: Composite Hydrologic and Hydraulic Risk; 334 --; 10.7.1; Reliability Computation by Direct Integration; 335 --; 10.7.2; Reliability Computation Using Safety Margin/Safety Factor; 337 --; 10.8; Computer Models for Floodflow Frequency Analysis; 340 --; Chapter 11; Water Withdrawals and Uses; 343 --; 11.1; Water-Use Data--Classification of Uses; 343 --; 11.2; Water for Energy Production; 348 --; 11.3; Water for Agriculture; 356 --; 11.3.1; Irrigation Trends and Needs; 356 --; 11.3.2; Irrigation Infrastructure; 357 --; 11.3.3; Irrigation System Selection and Performance; 365 --; 11.3.4; Water Requirements for Irrigation; 368 --; 11.3.5; Impacts of Irrigation; 370 --; 11.4; Water Supply/Withdrawals; 372 --; 11.4.1; Withdrawals; 372 --; 11.4.2; Examples of Regional Water Supply Systems; 378 --; 11.5; Water Demand and Price Elasticity; 383 --; 11.5.1; Price Elasticity of Water Demand; 383 --; 11.5.2; Demand Models; 385 --; 11.6; Drought Management; 386 --; 11.6.1; Drought Management Options; 386 --; 11.6.2; Drought Severity; 388 --; 11.6.3; Economic Aspects of Water Shortage; 390 --; 11.7; Analysis of Surface Water Supply; 394 --; 11.7.1; Surface-Water Reservoir Systems; 394 --; 11.7.2; Storage--Firm Yield Analysis for Water Supply; 394 --; 11.7.3; Reservoir Simulation; 403 --; Chapter 12; Water Distribution; 409 --; 12.1.1; Description, Purpose, and Components of Water Distribution Systems; 409 --; 12.1.2; Pipe Flow Equations; 419 --; 12.2; System Components; 421 --; 12.2.1; Pumps; 421 --; 12.2.2; Pipes and Fittings; 433 --d; 12.2.3; Valves; 436 --; 12.3; System Configuration and Operation; 438 --; 12.4; Hydraulics of Simple Networks; 440 --; 12.4.1; Series and Parallel Pipe Flow; 440 --; 12.4.2; Branching Pipe Flow; 443 --; 12.5; Pump Systems Analysis; 444 --; 12.5.1; System Head Curves; 444 --; 12.5.2; Pump Operating Point; 447 --; 12.5.3; System Design for Water Pumping; 449 --; 12.6; Network Simulation; 459 --; 12.6.1; Conservation Laws; 459 --; 12.6.2; Network Equations; 460 --; 12.6.3; Network Simulation: Hardy-Cross Method; 461 --; 12.6.4; Network Simulation: Linear Theory Method; 467 --; 12.6.5; Extended-Period Simulation; 468 --; 12.7; Modeling Water Distribution Systems; 469 --; 12.7.1; Computer Models; 469 --; 12.7.2; Calibration; 469 --; 12.7.3; Application of Models; 470 --; 12.7.4; Water Quality Modeling; 470 --; 12.8; Hydraulic Transients; 472 --; 12.8.1; Hydraulic Transients in Distribution Systems; 472 --; 12.8.2; Fundamentals of Hydraulic Transients; 472 --; 12.8.3; Control of Hydraulic Transients; 482 --; Chapter 13; Water for Hydroelectric Generation; 491 --; 13.1; Role of Hydropower; 491 --; 13.2; Components of Hydroelectric Plants; 497 --; 13.2.1; Elements of Generate Electricity; 497 --; 13.2.2; Hydraulics of Turbines; 504 --; 13.2.3; Power System Terms and Definitions; 506 --; 13.3; Determining Energy Potential; 507 --; 13.3.1; Hydrologic Data; 507 --; 13.3.2; Water Power Equations; 508 --; 13.3.3; Turbine Characteristics and Selection; 510 --; 13.3.4; Flow Duration Method; 513 --; 13.3.5; Sequential Streamflow-Routing Method; 519 --; 13.3.6; Power Rule Curve; 520 --; 13.3.7; Multipurpose Storage Operation; 521 --; Chapter 14; Flood Control; 523 --; 14.2; Floodplain Management; 527 --; 14.2.1; Floodplain Definition; 527 --; 14.2.2; Hydrologic and Hydraulic Analysis of Floods; 527 --; 14.2.3; Floodways and Floodway Fringes; 530 --; 14.2.4; Floodplain Management and Floodplain Regulations; 531 --; 14.2.5; National Flood Insurance Program; 532. || Hydraulic engineering. Hydrology. Technologie hydraulique. Hydrologie. Hydraulic engineering. Hydrology. Wasserreserve. Ingenieurwissenschaften. Hydrologie. Technologie hydraulique. Hydraulik. Hydrologie. Wasserreserve. Wasserverteilung.
8 figures, 4 b/w plates, numerous tables, mild sunning to spine, light creasing to bottom corner of back cover, text clean and tight Used
0666055831.Ghardcover. Good. Access codes and supplements are not guaranteed with used items. May be an ex-library book. hardcover
1333783108.Gpaperback. Good. Access codes and supplements are not guaranteed with used items. May be an ex-library book. paperback
1979MS-15Cambridge England: Middle East & North Africa Studies Press 1979. Comprehensive reference text presents a detailed ten-year study which assesses the scale of renewable and fossil water resources and the achievements and problems of managing water in the arid and semi-arid Middle East and North Africa. Topics covered include: water resource management; surface water; occurrence of natural water resources; groundwater in primary and secondary permeable material; hydrology; technological modifications of the hydrological cycle; integrated technology and its impact in arid areas; etc. 132 pgs. Illustrated. Publisher's stamp on front and rear endpapers. Dustjacket in mylar. First Menas Edition. Hard Cover. As New/As New. 8vo - over 7¾" - 9¾" tall. . Middle East & North Africa Studies Press Hardcover
20019977639John Wiley & Sons 2001. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In poor condition suitable as a reading copy. Please note the Image in this listing is a stock photo and may not match the covers of the actual item1700grams ISBN:9780471297833 John Wiley & Sons hardcover
19923992752Thomas Telford Ltd 1992. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In poor condition suitable as a reading copy. Please note the Image in this listing is a stock photo and may not match the covers of the actual item900grams ISBN:9780727716927 Thomas Telford Ltd hardcover
2004047937Reston Virginia: Amer Society of Civil Engineers 2004. First Edition First Printing . Hardcover. Very Good/No Jacket. 8vo - over 7¾ - 9¾" tall. Octavo. 348 pages. Hardcover bound in blue glossy paper-covered boards. Light to moderate wear to the binding. There is a little ding on the right side of the spine on the front hinge. Some sunning to the top edge of the front cover. A sound copy with secure inner hinges. Front flyleaf clipped at the top corner. Text is clean and unmarked. <br/> <br/> Amer Society of Civil Engineers hardcover
19739893340McGraw-Hill 1973. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In good all round condition. No dust jacket. Please note the Image in this listing is a stock photo and may not match the covers of the actual item800grams ISBN:0070522502 McGraw-Hill hardcover
20034339120AA Balkema 2003. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In poor condition suitable as a reading copy. No dust jacket. Library sticker on front cover. Please note the Image in this listing is a stock photo and may not match the covers of the actual item850grams ISBN:9789058095732 AA Balkema hardcover
1985774997PN. New. 1985. Soft Cover. Date is original print. This is a reprint edition. . PN paperback
1986777441PN. New. 1986. Soft Cover. Date is original print. This is a reprint edition. . PN paperback
1986777272PN. New. 1986. Soft Cover. Date is original print. This is a reprint edition. . PN paperback
Good+ Hardback. Boards have some corner wear. No dust jacket, probably as issued. Ex reference library, one label on front board. Small creases in the top page margin throughout, text unaffected, pages otherwise unmarked. Volume 3 in the 'Progress in Water Technology' series xx + 352p.
Good + Paperback. Writing by previous owner on inside of front cover in an otherwise clean copy.xii + 328p.
numerous tables and figures, gilt lettering to spine, slightly wear to head and tail of spine and corners of cover, light bump to top corners of cover, minor soiling to page block, previous owner's name on front inside cover, text clean and tight Used
1978HY-22Paris France: UNESCO/WHO 1978. Comparehensive reference text contains detailed technical papers from leading global scientists and field experts on a variety of topics relating to artificial and natural changes in the quality of water. Sections include: introduction to the various aspects of water quality surveys; factors affecting water quality as applicable to types of water bodies; techniques generally applicable to sampling analysing and data treatmwnt; special features of water quality surveys in different types of water bodies including streams lakes rivers estuaries etc. 350 pgs. 37 tables 69 illustrations fold-out maps. Prior owner's name on front endpaper and outer edge; blank label pastedown on rear endpaper. Minimal shelfwear. . . Soft Cover. Very Good. 8vo - over 7¾" - 9¾" tall. UNESCO/WHO Paperback
2008Alibris.0020875Bismarck State College. 2008. Spiralbound. Good. No dust jacket as issued. highlighting on a few pages. 262 p. Bismarck State College unknown
0364095717.Ghardcover. Good. Access codes and supplements are not guaranteed with used items. May be an ex-library book. hardcover
1333703066.Gpaperback. Good. Access codes and supplements are not guaranteed with used items. May be an ex-library book. paperback
Light marks on cover. Numerous figures, text clean and tight. Clean Copy
No marks or inscriptions. No creasing to covers or to spine. A clean very tight copy with slightly sunned unmarked boards and no bumping to corners. 137pp. A study of wastewater effluent control and treatment including the plant available to deal with them.