Energy Dissipators and Hydraulic Jump
Seiten
2010
|
Softcover reprint of hardcover 1st ed. 1992
Springer (Verlag)
978-90-481-4106-7 (ISBN)
Springer (Verlag)
978-90-481-4106-7 (ISBN)
Stilling basins utili z ing a hydraulic jump for energy dissipation are w i d e l y used in hydraulic engineering . Although w e l l - a c c e p t e d guidelines for a successful design are presently available, the information for the design of such dissipators is not yet compiled in book form .
Stilling basins utili z ing a hydraulic jump for energy dissipation are w i d e l y used in hydraulic engineering . D a Vinci was the first to describe the hydraulic jump, and Bidone conducted classical experiments about 170 years ago . Stilling basins w e r e developed in the thirties with signif- cant design improvements being made during the last sixty years . Although w e l l - a c c e p t e d guidelines for a successful design are presently available, the information for the design of such dissipators is not yet compiled in book form . This book provides state-of-the-art information on hydraulic jumps and associat ed stilling basins . A large numbe r of papers on the to pics are reviewed. T h e present trends of the art of designing a stilli ng basin are discussed and ideas for future research are outlined. Design criteria and recommendat ions are frequently given . However, this should not be considered as a r eady-to -use guideline since the design of an effective stilling basin is much more comple x than following general design steps . The book is divided into two parts. Part 1 on hydraulic jumps is c- prised of chapters 2 to 5. Part 2 consisting of chapters 6 to 14 deals with various hydraulic structures used to dissipate energy. The lists of notation and references are provided in each part separately although the same notation is u sed throughout.
Stilling basins utili z ing a hydraulic jump for energy dissipation are w i d e l y used in hydraulic engineering . D a Vinci was the first to describe the hydraulic jump, and Bidone conducted classical experiments about 170 years ago . Stilling basins w e r e developed in the thirties with signif- cant design improvements being made during the last sixty years . Although w e l l - a c c e p t e d guidelines for a successful design are presently available, the information for the design of such dissipators is not yet compiled in book form . This book provides state-of-the-art information on hydraulic jumps and associat ed stilling basins . A large numbe r of papers on the to pics are reviewed. T h e present trends of the art of designing a stilli ng basin are discussed and ideas for future research are outlined. Design criteria and recommendat ions are frequently given . However, this should not be considered as a r eady-to -use guideline since the design of an effective stilling basin is much more comple x than following general design steps . The book is divided into two parts. Part 1 on hydraulic jumps is c- prised of chapters 2 to 5. Part 2 consisting of chapters 6 to 14 deals with various hydraulic structures used to dissipate energy. The lists of notation and references are provided in each part separately although the same notation is u sed throughout.
1 Introduction.- 2 Classical Hydraulic Jump.- 3 Sloping Jump.- 4 Hydraulic Jump in Non-Rectangular Channel.- 5 Submerged Jumps.- 6 Introduction.- 7 Steps and Sills.- 8 Baffle Blocks.- 9 Effect of Roughness and Discharge.- 10 Expanding Channel.- 11 Bucket-Type Energy Dissipator.- 12 Various Aspects of Stilling Basins.- 13 Types of Stilling Basins.- 14 Experiences with Stilling Basins.- Author Index.
Erscheint lt. Verlag | 15.12.2010 |
---|---|
Reihe/Serie | Water Science and Technology Library ; 8 |
Zusatzinfo | XII, 290 p. |
Verlagsort | Dordrecht |
Sprache | englisch |
Maße | 155 x 235 mm |
Themenwelt | Naturwissenschaften ► Physik / Astronomie ► Mechanik |
ISBN-10 | 90-481-4106-0 / 9048141060 |
ISBN-13 | 978-90-481-4106-7 / 9789048141067 |
Zustand | Neuware |
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