M. Hanif Chaudhry
Open-Channel Flow
Open-Channel Flow
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- More about Open-Channel Flow
This text on open-channel flow emphasizes the application of efficient solution techniques, computational procedures, and modern methods of analysis, with a new chapter on levee breach modeling, hydraulic models, velocity measurements, references, problem sets, and exercises. It is ideal for students in senior-level undergraduate and graduate courses and civil engineers.
Format: Hardback
Length: 563 pages
Publication date: 16 June 2022
Publisher: Springer Nature Switzerland AG
In its third edition, this comprehensive text on open-channel flow offers a comprehensive introduction to the topic, along with up-to-date information for planning, designing, and operating water-resource projects. With a strong emphasis on the application of efficient solution techniques, computational procedures, and modern methods of analysis, it provides detailed coverage of both steady and unsteady flows. The new edition includes a dedicated chapter on modeling levee breach, expanded sections on hydraulic models and velocity measurements, a refreshed list of references and problem sets, and an accompanying solutions manual. Extensively classroom tested over years, this book serves as an ideal textbook for students enrolled in senior-level undergraduate and graduate courses in open-channel flow and hydraulic engineering, as well as a valuable reference for civil engineers seeking the latest developments in this field.
Introduction:
Open-channel flow is a fundamental aspect of hydrology and hydraulic engineering, involving the movement of water through channels, rivers, and other water bodies. It plays a crucial role in various water-resource projects, such as irrigation, drainage, flood control, and water supply. With the increasing demand for sustainable water resources and the challenges posed by climate change, there is a growing need for effective and efficient solutions in open-channel flow.
Third Edition Features:
The third edition of this text has been extensively revised and updated to reflect the latest developments in open-channel flow. It includes a new chapter on the modeling of levee breach, which is a critical aspect of flood control and disaster management. The book also features expanded sections on hydraulic models and velocity measurements, providing detailed insights into the principles and applications of these tools. Additionally, the list of references and problem sets has been updated to include the most recent research and industry practices.
Emphasis on Efficiency:
One of the key strengths of this text is its emphasis on the application of efficient solution techniques, computational procedures, and modern methods of analysis. The authors have drawn on their extensive experience in the field to provide practical guidance on how to solve complex open-channel flow problems. The book includes detailed explanations of various analytical models, computational methods, and software tools, enabling readers to apply these techniques in their own research and practice.
Steady and Unsteady Flows:
The text covers both steady and unsteady flows in open channels, providing a comprehensive understanding of the physical principles and mathematical models involved. It discusses the principles of fluid mechanics, hydrodynamics, and hydraulic equations, and applies them to various flow scenarios, including river flow, urban drainage, and wastewater treatment. Readers will gain a deep appreciation of the factors that influence flow behavior, such as channel geometry, flow velocities, and water properties, and how to optimize flow conditions for different applications.
Applications in Water-Resource Projects:
Open-channel flow plays a critical role in the planning, design, and operation of water-resource projects. The book provides detailed guidance on how to evaluate the hydrological and hydraulic conditions of a project, select appropriate design criteria and parameters, and optimize the performance of water-resource systems. It covers topics such as hydraulic analysis, hydrograph modeling, flood control, and water quality management, and provides case studies and examples to illustrate the practical application of these principles.
Ideal Textbook for Students:
The third edition of this text is an ideal textbook for students enrolled in senior-level undergraduate and graduate courses in open-channel flow and hydraulic engineering. It provides a comprehensive and up-to-date coverage of the topic, and is supplemented with numerous illustrations, diagrams, and problem sets to facilitate understanding and application of the material. The book also includes a solutions manual, which provides detailed solutions to all the problem sets and exercises included in the text.
Reference for Civil Engineers:
In addition to its use as a textbook, this text is also a valuable reference for civil engineers seeking up-to-date information on the latest developments in open-channel flow. It provides a comprehensive overview of the field, covering both theoretical and practical aspects, and is an essential resource for professionals working in water resources, urban infrastructure, and environmental engineering.
Conclusion:
In conclusion, the third edition of this text on open-channel flow is a comprehensive and authoritative resource for students, professionals, and researchers in the field of hydrology and hydraulic engineering. With its emphasis on efficiency, application of modern methods, and coverage of both steady and unsteady flows, it provides a valuable tool for understanding and solving complex open-channel flow problems. Whether you are a student seeking to advance your knowledge in this area or a professional looking to stay updated on the latest developments, this book is an essential addition to your library.
Weight: 1658g
Dimension: 279 x 210 (mm)
ISBN-13: 9783030964467
Edition number: 3rd ed. 2022
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