-67% OFFHydrodynamics of Pumps (English, Christopher E. Brennen)
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Specifications
| Publisher | Cambridge University Press |
| Language | English |
| ISBN-13 | 9781107002371 |
| ISBN-10 | 1107002370 |
| Author | Christopher E. Brennen |
Product Description
Here on GlowMirror, you'll find Hydrodynamics of Pumps filed under Cambridge University Press -- everything you need to know is covered below.
About the Book
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…
ISBN: 9781107002371
Book Insights
What You'll Learn
- ·In-depth exploration of topics covered in Hydrodynamics of Pumps
- ·Key concepts explained with clarity and practical examples
- ·Insights valuable for anyone studying or working in Cambridge University Press
Who Should Read This
Advanced students, researchers, and domain experts seeking in-depth knowledge.
Key Highlights
- ·Brand new physical book delivered across India
- ·15-day hassle-free return policy
Customer Reviews
A valuable reference for the pump engineer - newcomer or expert
It is a big leap from basic pump concepts and formulas to cutting edge cavitation technologies, analysis of unsteady flows and rotordynamic analytical theory but Christopher Brennen deftly manages this transition. The author begins each topic with a concise but clear presentation of basic concepts and principles and continues on to cover the subject matter in depth, in a well-organized volume. I highly recommend this book to the newcomer as well as to the expert who wants to better his understanding of pumps. Hydrodynamics of Pumps is an especially valuable and authoritative reference for engineers involved in pump cavitation issues, unsteady flow-related problems and pump rotordynamics.





