Elements of Computational Fluid Dynamics

Elements of Computational Fluid Dynamics
Title Elements of Computational Fluid Dynamics PDF eBook
Author John D. Ramshaw
Publisher World Scientific
Total Pages 140
Release 2011
Genre Science
ISBN 1848167059

Download Elements of Computational Fluid Dynamics Book in PDF, Epub and Kindle

This book is a brief introduction to the fundamental concepts of computational fluid dynamics (CFD). It is addressed to beginners, and presents the ABC's or bare essentials of CFD in their simplest and most transparent form. The approach taken is to describe the principal analytical tools required, including truncation-error and stability analyses, followed by the basic elements or building blocks of CFD, which are numerical methods for treating sources, diffusion, convection, and pressure waves. Finally, it is shown how those ingredients may be combined to obtain self-contained numerical methods for solving the full equations of fluid dynamics. The book should be suitable for self-study, as a textbook for CFD short courses, and as a supplement to more comprehensive CFD and fluid dynamics texts.

Finite Element Methods for Computational Fluid Dynamics

Finite Element Methods for Computational Fluid Dynamics
Title Finite Element Methods for Computational Fluid Dynamics PDF eBook
Author Dmitri Kuzmin
Publisher SIAM
Total Pages 321
Release 2014-12-18
Genre Science
ISBN 1611973600

Download Finite Element Methods for Computational Fluid Dynamics Book in PDF, Epub and Kindle

This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions, among other topics. To make the book accessible to readers with diverse interests and backgrounds, the authors begin at a basic level and advance to numerical tools for increasingly difficult flow problems, emphasizing practical implementation rather than mathematical theory.?Finite Element Methods for Computational Fluid Dynamics: A Practical Guide?explains the basics of the finite element method (FEM) in the context of simple model problems, illustrated by numerical examples. It comprehensively reviews stabilization techniques for convection-dominated transport problems, introducing the reader to streamline diffusion methods, Petrov?Galerkin approximations, Taylor?Galerkin schemes, flux-corrected transport algorithms, and other nonlinear high-resolution schemes, and covers Petrov?Galerkin stabilization, classical projection schemes, Schur complement solvers, and the implementation of the k-epsilon turbulence model in its presentation of the FEM for incompressible flow problem. The book also describes the open-source finite element library ELMER, which is recommended as a software development kit for advanced applications in an online component.?

Spectral/hp Element Methods for Computational Fluid Dynamics

Spectral/hp Element Methods for Computational Fluid Dynamics
Title Spectral/hp Element Methods for Computational Fluid Dynamics PDF eBook
Author George Karniadakis
Publisher American Chemical Society
Total Pages 676
Release 2013-01-10
Genre Mathematics
ISBN 0199671362

Download Spectral/hp Element Methods for Computational Fluid Dynamics Book in PDF, Epub and Kindle

Revision of: Spectral/hp element methods for CFD. 1999.

Characteristics Finite Element Methods in Computational Fluid Dynamics

Characteristics Finite Element Methods in Computational Fluid Dynamics
Title Characteristics Finite Element Methods in Computational Fluid Dynamics PDF eBook
Author Joe Iannelli
Publisher Springer Science & Business Media
Total Pages 744
Release 2006-09-24
Genre Science
ISBN 3540453431

Download Characteristics Finite Element Methods in Computational Fluid Dynamics Book in PDF, Epub and Kindle

This book details a systematic characteristics-based finite element procedure to investigate incompressible, free-surface and compressible flows. Several sections derive the Fluid Dynamics equations from first thermo-mechanics principles and develop this multi-dimensional and infinite-directional upstream procedure by combining a finite element discretization with an implicit non-linearly stable Runge-Kutta time integration for the numerical solution of the Euler and Navier Stokes equations.

Computational Fluid Dynamics: Principles and Applications

Computational Fluid Dynamics: Principles and Applications
Title Computational Fluid Dynamics: Principles and Applications PDF eBook
Author Jiri Blazek
Publisher Elsevier
Total Pages 496
Release 2005-12-20
Genre Science
ISBN 9780080529677

Download Computational Fluid Dynamics: Principles and Applications Book in PDF, Epub and Kindle

Computational Fluid Dynamics (CFD) is an important design tool in engineering and also a substantial research tool in various physical sciences as well as in biology. The objective of this book is to provide university students with a solid foundation for understanding the numerical methods employed in today’s CFD and to familiarise them with modern CFD codes by hands-on experience. It is also intended for engineers and scientists starting to work in the field of CFD or for those who apply CFD codes. Due to the detailed index, the text can serve as a reference handbook too. Each chapter includes an extensive bibliography, which provides an excellent basis for further studies.

Applied Computational Fluid Dynamics Techniques

Applied Computational Fluid Dynamics Techniques
Title Applied Computational Fluid Dynamics Techniques PDF eBook
Author Rainald Löhner
Publisher John Wiley & Sons
Total Pages 544
Release 2008-04-30
Genre Science
ISBN 9780470989661

Download Applied Computational Fluid Dynamics Techniques Book in PDF, Epub and Kindle

Computational fluid dynamics (CFD) is concerned with the efficient numerical solution of the partial differential equations that describe fluid dynamics. CFD techniques are commonly used in the many areas of engineering where fluid behavior is an important factor. Traditional fields of application include aerospace and automotive design, and more recently, bioengineering and consumer and medical electronics. With Applied Computational Fluid Dynamics Techniques, 2nd edition, Rainald Löhner introduces the reader to the techniques required to achieve efficient CFD solvers, forming a bridge between basic theoretical and algorithmic aspects of the finite element method and its use in an industrial context where methods have to be both as simple but also as robust as possible. This heavily revised second edition takes a practice-oriented approach with a strong emphasis on efficiency, and offers important new and updated material on; Overlapping and embedded grid methods Treatment of free surfaces Grid generation Optimal use of supercomputing hardware Optimal shape and process design Applied Computational Fluid Dynamics Techniques, 2nd edition is a vital resource for engineers, researchers and designers working on CFD, aero and hydrodynamics simulations and bioengineering. Its unique practical approach will also appeal to graduate students of fluid mechanics and aero and hydrodynamics as well as biofluidics.

Discontinuous Finite Elements in Fluid Dynamics and Heat Transfer

Discontinuous Finite Elements in Fluid Dynamics and Heat Transfer
Title Discontinuous Finite Elements in Fluid Dynamics and Heat Transfer PDF eBook
Author Ben Q. Li
Publisher Springer Science & Business Media
Total Pages 587
Release 2006-06-29
Genre Technology & Engineering
ISBN 1846282055

Download Discontinuous Finite Elements in Fluid Dynamics and Heat Transfer Book in PDF, Epub and Kindle

Over the past several years, significant advances have been made in developing the discontinuous Galerkin finite element method for applications in fluid flow and heat transfer. Certain unique features of the method have made it attractive as an alternative for other popular methods such as finite volume and finite elements in thermal fluids engineering analyses. This book is written as an introductory textbook on the discontinuous finite element method for senior undergraduate and graduate students in the area of thermal science and fluid dynamics. It also can be used as a reference book for researchers and engineers who intend to use the method for research in computational fluid dynamics and heat transfer. A good portion of this book has been used in a course for computational fluid dynamics and heat transfer for senior undergraduate and first year graduate students. It also has been used by some graduate students for self-study of the basics of discontinuous finite elements. This monograph assumes that readers have a basic understanding of thermodynamics, fluid mechanics and heat transfer and some background in numerical analysis. Knowledge of continuous finite elements is not necessary but will be helpful. The book covers the application of the method for the simulation of both macroscopic and micro/nanoscale fluid flow and heat transfer phenomena.