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Water Works Engineering: Planning, Design And Operation
PDF Download Water Works Engineering: Planning, Design And Operation
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From the Inside Flap
PrefaceThe Safe Drinking Water Act Amendments of 1986 are the most sweeping legislative changes in the history of the public water supply field and will have more of an impact than the original act passed over two decades ago. These legislative changes reflect a perception by Congress that there is a great amount of public anxiety over the quality of our drinking water, as well as frustration with the manner in which the U.S. Environmental Protection Agency (USEPA) enforced the requirements of the original act. Practicing engineers and utility managers who are involved with the planning, design, and operation of water treatment plants must begin to evaluate current options and anticipate what lies ahead. At the present time, many programs in civil and environmental engineering at numerous universities are offering courses in the area of water treatment plant design.Several excellent books have been written in recent years that present theory and principles of water treatment processes. The authors have observed during their years of experience in the water treatment field that no publication has been devoted entirely to water works engineering planning, design, and operation. The intent of the authors in developing this book is twofold: first, to consolidate the developments in design of water works engineering that have evolved as a result of technological advancement in the field and of the concepts and policies promulgated by the environmental laws and the subsequent guidelines; second, to develop step-by-step procedures for planning, design, and operation of a medium-size conventional water treatment plant.This book has a total of nineteen chapters and four appendices. Chapters 1 through 4 are devoted to the basic facts of water engineering. Current and future trends in water treatment technology, water quality constituents, design factors, drinking water regulations, unit operations and processes, process combinations, and process trains are discussed in detail.Chapter 5 is devoted to preparation of a predesign report. The general purpose of a predesign engineering report and an example of a model predesign report for a medium-size water supply project are presented. In this predesign report, procedures are presented for (1) estimation of population, water demand, plant capacity, and raw water quality; (2) evaluation and selection of a treatment process train; (3) coordination with distribution system; and (4) estimation of costs for proposed capital improvement project.The remainder of the book is devoted to the design of the medium-size water treatment facility for which the predesign report is developed in Chapter 5. Step-by-step design calculations; equipment details; engineering drawings, plans, and specifications; and operation and maintenance of head works, raw water transport, treatment, and distribution systems: all are presented. These systems include raw water intake, screening, pump station, transport pipeline, flow measurement, rapid mix, flocculation, clarification, filtration, color, taste and odor control, disinfection, distribution, and residuals handling and disposal. Also, separate chapters have been devoted to plant layout, yard piping and hydraulics, instrumentation and automatic controls, design summary, and the avoidance of design errors. A separate chapter (Chapter 18) is provided to cover nonconventional treatment processes. In this chapter, the treatment processes for nitrate and fluoride removal, ion exchange, reverse osmosis, and heavy metals and organics removal are briefly presented.The design procedures given in this book are for illustration and general information only and are not intended to be used as standard for water treatment plant designs. References made in this publication to specific methods, processes, and equipment do not constitute or imply an endorsement or recommendation. Equivalent or improved equipment may be obtained from many other manufacturers not mentioned in this publication.This book will serve the needs of students, teachers, consulting engineers, equipment manufacturers, and technical personnel in city, state, and federal organizations who must review designs and specifications. In order to maximize the usefulness of this book, the material has been presented in a simplified and concise format. Many tables have been developed using a variety of sources. Those tables provide information used extensively in water treatment plant design. Basic properties of water, hydraulic design information, chemical properties and equipment selection, equipment manufacturers, cost equations, and unit conversions are arranged in four appendices.It should be mentioned that a great deal of emphasis has been given to the predesign report and the design of conventional water treatment units. The authors are well aware of the fact that equal emphasis or in-depth design procedures for many other nonconventional water treatment processes such as denitrification, defluoridation, demineralization, and other specialized processes (briefly presented in Chapters 3 and 18) are not given elsewhere in this book. The reason is very simple. Covering design procedures for these processes would take another book of equal size. The authors strongly believe that the planning and design principles developed in this book can easily be extended to the design of many other treatment processes for a new plant or the upgrading of an existing facility. Therefore, the in-depth coverage and step-by-step design procedure for an entire conventional water treatment plant is the strongest feature of this publication.This book is intended for a design course in water works engineering. Most of the programs in civil and environmental engineering are offering such courses at graduate and undergraduate levels. The material is developed in such a way that the normal prerequisites (fluid mechanics and an introductory course in water supply and wastewater treatment) would be sufficient. Furthermore, the basic material contained in this book can be covered in a three-semester credit course.In this country, because the old plants will be upgraded in the future, the U.S. customary units will continue to be in use for some time to come. Therefore, where possible, both systems of units are used side-by-side, and proper conversion factors are provided. Complete conversion tables are given separately in an appendix.
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From the Back Cover
Water treatment plants: planning, design, and operationsin depth. The in-depth, start-to-finish guide to water treatment planning, design, and operations Easy-to-apply design criteria, procedures, and concepts Units layout, yard pipings, hydraulic profile, instrumentation, control, and more Equipment specification, selection, and maintenance In Water Works Engineering, a team of leading water quality professionals present the state-of-the-art in water treatment facility design-and offer thorough, end-to-end guidance for successful planning, design, and operations. The authors begin by introducing the latest advances in water treatment technology, and key future trends. They review each key constituent of water quality and its health significance, as well as today's best unit operations and water treatment processes. Next, they walk step-by-step through water treatment planning and design, including predesign reports, problem definition, and site selection. Coverage includes: Raw water intake, screening, and aeration Conveyance, flow measurement, and pumping Coagulation, flocculation, precipitation, sedimentation, filtration, disinfection, and fluoridation Complete process trains demonstrating the interrelationships amongst key processes Practical, real-world techniques for selecting equipment and manufacturers Nonconventional treatment processes: removing specific constituents that conventional treatment leaves behind The authors provide detailed coverage of aesthetic issues such as color, taste, and odor control; today's best techniques for residuals management; practical guidance on instrumentation and control; a troubleshooting guide for avoiding key design errors, and more. Water Works Engineering is essential reading for all professionals in the field: consulting engineers, equipment manufacturers, and regulatory professionals alike.
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Product details
Paperback: 864 pages
Publisher: Prentice Hall; 1 edition (April 23, 2000)
Language: English
ISBN-10: 0131502115
ISBN-13: 978-0131502116
Product Dimensions:
7 x 2 x 9.1 inches
Shipping Weight: 2.6 pounds (View shipping rates and policies)
Average Customer Review:
2.8 out of 5 stars
10 customer reviews
Amazon Best Sellers Rank:
#1,651,102 in Books (See Top 100 in Books)
Decent book for water design. It has a long design example that continues into each chapter. Tons of information that is still relevant today even though this book was printed in 2000. However, it's in desperate need of an update. There are a ton of typos that you're left wondering how could they have missed them. That's not even the worst part. The binding on the paperback is horrible. DO NOT purchase the paperback. I used this book no more than a dozen times and it has split in half. Pages are all over the place. To use this book I would have to take it to FedEx/UPS to get this professionally bound. Look for the hardcover version if you really want this book.
Why did the post office not drop my package home? I had to struggle before I get an opened package! The book has a poor quality, I've lost many pages within one month of use.
Great seller, fast shipping. Thank you, it is much appreciated!
Damage to spine.
The binding of the book is cheap and terrible. Within the first week of using the book, pages were falling out. I eventually took it to fedex and had professionally bound.
the binding of the book is not good at all. it was very tough for me read the book properly because of its binding...
I think that this book is really really good for those involved in water supply and water treatment especially environmental and civil engineers. All the concepts are there. Many books focus mainly on the theory, but this book is very useful for practical and application purposes. I think only the 2000 edition of S Kuwamura's book "Integrated Design and Operation of Water Treatment Facilities" comes close to matching the usefullness of this book for engineers dealing with water treatment design. I say this book is definetely worth buying, and for me, who is an environmental engineer dealing with water treatment, this book has come in so handy, that I always keep it in the office. It is really good to see a great book being published which comes in so handy to engineers when designing.
Till the arrival of this book, there have been five books commonly used by consulting engineers for the design of water treatment plants. Water and Wastewater Engineering by Fair/Geyer/Okun (1968), Water Treatment Plant Design by Sanks (1978), Water Treatment Principles and Design by James M. Montgomey, Inc.(1985), Integrated Design of Water Treatment Facilities by S. Kawamura (1991), and Water Treatment Plant Design by AWWA/ASCE (1998). As evident from the dates of publication of above mentioned books, most of them are 10-20 years old except for last one. Some of the above books needs a companion book in order to fully understand theory behind unit processes in environmental engineering. Another drawback with some design books is that they do not provide step-by-step procedure for planning, design, and operation of water treatment plant.Water Works Engineering by Qasim, Motley, and Zhu has a total of nineteen chapters, and four appendices. Chapter 1 through 4 are devoted to the some fundamentals of water engineering. Chapter 5 deals with the preparation of a predesign report. The remainder of the book is devoted to the design of medium-size water treatment plant. It covers step-by-step design calculations; equipment details; engineering drawings; and operation and maintenance of head works, raw water transport, treatment, and distribution systems. Separate chapters have been devoted to plant layout, yard piping and hydraulics, instrumentation and automatic controls, design summary, and the avoidance of design errors.Inclusion of more detailed description of laboartory tests for predesign studies would have been better. The book does not talk much about the the commonly used softwares in water works.Overall, this book is an excellent manual for design engineers in water industry. Its step-by-step procedures for the design of water treatment plants and its in-depth coverage for the entire conventional water treatment plant is the strongest feature of this publication.
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