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An introduction to hydraulic geometry, discussion of different related theories, and their application in river engineering. Handbook of Hydraulic Geometry provides an excellent summary for hydraulic engineers, as well as graduate students and researchers in fluvial geomorphology and environmental engineering.
Fluid properties and hydraulic units - Hydrostatics - Fundamental concepts of fluid flow - Orifices, gates, and tubes - Weirs - Pipes - Steady uniform flow in open channels - Open channels with nonuniform flow - High-velocity transitions - Wave motion and forces - Spatially variable and unsteady flow - Measurement of flowing water - Computational hydraulics - Computer programs in hydraulics.
The handbook has been composed on the basis of processing, systematization and classification of the results of a great number of investigations published at different time. The essential part of the book is the outcome of investigations carried out by the author. The present edition of this handbook should assist in increasing the quality and efficiency of the design and usage of indutrial power engineering and other constructions and also of the devices and apparatus through which liquids and gases move.
The Second Edition of the Practical Hydraulics Handbook is a must for all those who work with water utility systems. Presented in workbook format and emphasizing practical applications, this Handbook is perfect for hydraulic engineers, technicians, operating personnel, supervisors, managers, consultants, and students. The exceptionally well-organized chapters include information on pressurized systems and open channel flow, principles of energy and force, flow calculations and measurement, pumps, and pumping applications. This latest edition of the Practical Hydraulics Handbook includes new exercises at the end of each chapter and detailed solutions to selected exercises. The well-chosen exercises allow readers to practice applications of the theory and to test their knowledge of the material. The solutions provide guidance and problem-solving techniques that can be used both in the field and in the lab. Reference tables are also provided for calculations of friction loss, velocity, pipe fullness, well drawdown, English/metric conversions, power, and metered flow. These tables make calculations easier and minimize the chance for error. In this new edition of Practical Hydraulics Handbook, all of the major principles and calculations dealing with the hydraulics of water systems are covered, and new and expanded material has been added.
Written by an expert with thirty years experience in the field,this is a concise review of the hydrodynamic concepts andcalculation procedures, upon which fluvial hydraulics isbuilt. The first part is devoted to steady uniform and non-uniform as wellas unsteady flow in open channels. The second part deals withtransport phenomena, including sediment transport and local scour,turbidity currents and mixing processes in open channels. The volume is divided into nine chapters of unequal length whichare autonomous and self-contained. The subject matter presented ineach chapter is usually followed by a number of solved exercises,accompanied by a detailed discussion of the solution procedure.Unsolved problems are given at the end of each chapter. The book is written in a user-friendly style and has a doublevocation. It will readily serve as a textbook for undergraduateand/or graduate students as well as a handbook for theprofessionals dealing with problems in environmental, waterresources, civil, hydraulic and agricultural engineering, and ingeomorphology and geology.