Hydrodynamics of pumps / Christopher E. Brennen. 6

By: Brennen, Christopher E. 4 0 (Christopher Earls),16, 1941- [, ] | [, ] |
Contributor(s): 5 6 [] |
Language: Unknown language code Summary language: Unknown language code Original language: Unknown language code Series: ; Cambridge :; Cambridge University Press, ©201146Edition: Description: 26 cm. xv, 270 pages : illustrationsContent type: text Media type: unmediated Carrier type: volumeISBN: 9781107002371 (hardback)ISSN: 2Other title: 6 []Uniform titles: | | Related works: 1 40 6 []Subject(s): -- 2 -- 0 -- -- | -- 2 -- 0 -- 6 -- | 2 0 -- | -- -- 20 -- | | -- -- Fluid dynamics. Pumping machinery;Hydrodynamics. -- -- 20 -- | -- -- -- 20 -- --Genre/Form: -- 2 -- Additional physical formats: DDC classification: | 621.252 B751h 2011 LOC classification: | TJ901 | .B74 20112Other classification: TEC009070
Contents:
Machine generated contents note: 1. Introduction; 2. Basic principles; 3. Two-dimensional performance analysis; 4. Other flow features; 5. Cavitation parameters and inception; 6. Bubble dynamics, damage and noise; 7. Cavitation and pump performance; 8. Pump vibration; 9. Unsteady flow in hydraulic systems; 10. Radial and rotodynamic forces.
Action note: In: Summary: Provided by publisher.;Provided by publisher. Hydrodynamics of Pumps is a reference text for pump experts and students exploring pumps and pump design--;Hydrodynamics of Pumps is a reference for pump experts and a textbook for advanced students exploring pumps and pump design. This book is about the fluid dynamics of liquid turbomachines, particularly pumps. It focuses on special problems and design issues associated with the flow of liquid through a rotating machine. There are two characteristics of a liquid that lead to problems and cause a significantly different set of concerns than those in gas turbines. These are the potential for cavitation and the high density of liquids, which enhances the possibility of damaging, unsteady flows and forces. The book begins with an introduction to the subject, including cavitation, unsteady flows, and turbomachinery as well as basic pump design and performance principles. Chapter topics include flow features, cavitation parameters and inception, bubble dynamics, cavitation effects on pump performance, and unsteady flows and vibration in pumps - discussed in the three final chapters. The book is richly illustrated and includes many practical examples-- Other editions:
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Item type Current location Home library Collection Call number Status Date due Barcode Item holds
Book PLM
PLM
Circulation Section
Circulation-Circulating 621.252 B751h 2011 (Browse shelf) Available C36538
Total holds: 0

56

Includes bibliographical references and index.

Machine generated contents note: 1. Introduction; 2. Basic principles; 3. Two-dimensional performance analysis; 4. Other flow features; 5. Cavitation parameters and inception; 6. Bubble dynamics, damage and noise; 7. Cavitation and pump performance; 8. Pump vibration; 9. Unsteady flow in hydraulic systems; 10. Radial and rotodynamic forces.

5

Provided by publisher.;Provided by publisher. Hydrodynamics of Pumps is a reference text for pump experts and students exploring pumps and pump design--;Hydrodynamics of Pumps is a reference for pump experts and a textbook for advanced students exploring pumps and pump design. This book is about the fluid dynamics of liquid turbomachines, particularly pumps. It focuses on special problems and design issues associated with the flow of liquid through a rotating machine. There are two characteristics of a liquid that lead to problems and cause a significantly different set of concerns than those in gas turbines. These are the potential for cavitation and the high density of liquids, which enhances the possibility of damaging, unsteady flows and forces. The book begins with an introduction to the subject, including cavitation, unsteady flows, and turbomachinery as well as basic pump design and performance principles. Chapter topics include flow features, cavitation parameters and inception, bubble dynamics, cavitation effects on pump performance, and unsteady flows and vibration in pumps - discussed in the three final chapters. The book is richly illustrated and includes many practical examples--

5

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