Turbulence modelling is a critically important area in any industry dealing with fluid flow, having many implications for computational fluid dynamics (CFD) codes. It also retains a huge interest for applied mathematicians since there are many unsolved problems. This book provides a comprehensive account of the state-of-the-art in predicting turbulent and transitional flows by some of the world's leaders in these fields. It can serve as a graduate-level textbook and, equally, as a reference book for research workers in industry or academia. It is structured in three parts: Physical and Numerical Techniques; Flow Types and Processes; and Future Directions. As the only broad account of the subject, it will prove indispensable for all working in CFD, whether academics interested in turbulent flows, industrial researchers in CFD interested in understanding the models embedded in their software (or seeking more powerful models) or graduate students needing an introduction to this vital area.
'The aspiration of the book is to serve both as a graduate-level textbook and as a reference book for researchers and it certainly achieves both objectives.'
Dr George N. Barakos
‘… it is directed at the specialist, whether a research student who may still need some guidance in the reading of it, or the established expert for whom it will provide an excellent up-to-date account of the subject.’
Source: Contemporary Physics
‘… can be strongly recommended to graduate students and academic teachers as well as to the CFD practitioner who has the ambition to look, and perhaps to go, beyond the commercially available software.’
Source: Zeitschrift für Angewandte Mathematik und Mechanik
Loading metrics...
* Views captured on Cambridge Core between #date#. This data will be updated every 24 hours.
Usage data cannot currently be displayed.
This section outlines the accessibility features of this content - including support for screen readers, full keyboard navigation and high-contrast display options. This may not be relevant for you.
Accessibility compliance for the PDF of this book is currently unknown and may be updated in the future.