Nazarenko | Fluid Dynamics Via Examples and Solutions | Buch | 978-1-4398-8882-7 | sack.de

Buch, Englisch, 248 Seiten, Format (B × H): 154 mm x 233 mm, Gewicht: 350 g

Nazarenko

Fluid Dynamics Via Examples and Solutions


1. Auflage 2014
ISBN: 978-1-4398-8882-7
Verlag: CRC Press

Buch, Englisch, 248 Seiten, Format (B × H): 154 mm x 233 mm, Gewicht: 350 g

ISBN: 978-1-4398-8882-7
Verlag: CRC Press


Fluid Dynamics via Examples and Solutions provides a substantial set of example problems and detailed model solutions covering various phenomena and effects in fluids. The book is ideal as a supplement or exam review for undergraduate and graduate courses in fluid dynamics, continuum mechanics, turbulence, ocean and atmospheric sciences, and related areas. It is also suitable as a main text for fluid dynamics courses with an emphasis on learning by example and as a self-study resource for practicing scientists who need to learn the basics of fluid dynamics.

The author covers several sub-areas of fluid dynamics, types of flows, and applications. He also includes supplementary theoretical material when necessary. Each chapter presents the background, an extended list of references for further reading, numerous problems, and a complete set of model solutions.

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Zielgruppe


Advanced undergraduate and beginning graduate students in physics and engineering.


Autoren/Hrsg.


Weitere Infos & Material


Fluid Equations and Different Regimes of Fluid Flows. Conservation Laws in Incompressible Fluid Flows. Fluid with Free Surface. Waves and Instabilities. Boundary Layers. Two-Dimensional Flows. Point Vortices and Point Sources. Turbulence. Compressible Flow. Bibliography. Index.


Sergey Nazarenko is a professor at the University of Warwick. His research focuses on fluid dynamics, turbulence, and waves, including wave turbulence, magneto-hydrodynamic turbulence, superfluid turbulence, water waves, Rossby waves, vortices and jets in geophysical fluids, drift waves and zonal jets in plasmas, optical vortices and turbulence, and turbulence in Bose-Einstein condensates.



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