Theoretical Analysis And Modeling Of Turbulent Diffusion By Stochastic Tools
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Statistical Theory and Modeling for Turbulent Flows
Author | : P. A. Durbin |
Publisher | : Wiley-Blackwell |
Total Pages | : 312 |
Release | : 2001-03-12 |
Genre | : Mathematics |
ISBN | : |
Most natural and industrial flows are turbulent. The atmosphere and oceans, automobile and aircraft engines, all provide examples of this ubiquitous phenomenon. In recent years, turbulence has become a very lively area of scientific research and application, and this work offers a grounding in the subject of turbulence, developing both the physical insight and the mathematical framework needed to express the theory. Providing a solid foundation in the key topics in turbulence, this valuable reference resource enables the reader to become a knowledgeable developer of predictive tools. This central and broad ranging topic would be of interest to graduate students in a broad range of subjects, including aeronautical and mechanical engineering, applied mathematics and the physical sciences. The accompanying solutions manual to the text also makes this a valuable teaching tool for lecturers and for practising engineers and scientists in computational and experimental and experimental fluid dynamics.
Book catalog of the Library and Information Services Division
Author | : Environmental Science Information Center. Library and Information Services Division |
Publisher | : |
Total Pages | : 444 |
Release | : 1977 |
Genre | : |
ISBN | : |
Book Catalog of the Library and Information Services Division: Subject index
Author | : Environmental Science Information Center. Library and Information Services Division |
Publisher | : |
Total Pages | : 438 |
Release | : 1977 |
Genre | : Earth sciences |
ISBN | : |
Introduction to Turbulent Transfer of Particles, Temperature and Magnetic Fields
Author | : Igor Rogachevskii |
Publisher | : Cambridge University Press |
Total Pages | : 271 |
Release | : 2021-08-05 |
Genre | : SCIENCE |
ISBN | : 1316518604 |
Introducing key concepts in turbulent transport with an overview of analytical and statistical tools to advanced graduates and researchers.
Mathematical Modeling for Complex Fluids and Flows
Author | : Michel Deville |
Publisher | : Springer Science & Business Media |
Total Pages | : 278 |
Release | : 2012-01-12 |
Genre | : Mathematics |
ISBN | : 3642252958 |
Mathematical Modeling for Complex Fluids and Flows provides researchers and engineering practitioners encountering fluid flows with state-of-the-art knowledge in continuum concepts and associated fluid dynamics. In doing so it supplies the means to design mathematical models of these flows that adequately express the engineering physics involved. It exploits the implicit link between the turbulent flow of classical Newtonian fluids and the laminar and turbulent flow of non-Newtonian fluids such as those required in food processing and polymeric flows. The book develops a descriptive mathematical model articulated through continuum mechanics concepts for these non-Newtonian, viscoelastic fluids and turbulent flows. Each complex fluid and flow is examined in this continuum context as well as in combination with the turbulent flow of viscoelastic fluids. Some details are also explored via kinetic theory, especially viscoelastic fluids and their treatment with the Boltzmann equation. Both solution and modeling strategies for turbulent flows are laid out using continuum concepts, including a description of constructing polynomial representations and accounting for non-inertial and curvature effects. Ranging from fundamental concepts to practical methodology, and including discussion of emerging technologies, this book is ideal for those requiring a single-source assessment of current practice in this intricate yet vital field.