The Finite Volume Method in Computational Fluid Dynamics
Title | The Finite Volume Method in Computational Fluid Dynamics PDF eBook |
Author | F. Moukalled |
Publisher | Springer |
Pages | 799 |
Release | 2015-08-13 |
Genre | Technology & Engineering |
ISBN | 3319168746 |
This textbook explores both the theoretical foundation of the Finite Volume Method (FVM) and its applications in Computational Fluid Dynamics (CFD). Readers will discover a thorough explanation of the FVM numerics and algorithms used for the simulation of incompressible and compressible fluid flows, along with a detailed examination of the components needed for the development of a collocated unstructured pressure-based CFD solver. Two particular CFD codes are explored. The first is uFVM, a three-dimensional unstructured pressure-based finite volume academic CFD code, implemented within Matlab. The second is OpenFOAM®, an open source framework used in the development of a range of CFD programs for the simulation of industrial scale flow problems. With over 220 figures, numerous examples and more than one hundred exercise on FVM numerics, programming, and applications, this textbook is suitable for use in an introductory course on the FVM, in an advanced course on numerics, and as a reference for CFD programmers and researchers.
Computational Fluid Dynamics
Title | Computational Fluid Dynamics PDF eBook |
Author | Jiri Blazek |
Publisher | Elsevier |
Pages | 491 |
Release | 2005-12-20 |
Genre | Science |
ISBN | 0080529674 |
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.
An Introduction to Computational Fluid Dynamics The Finite Volume Method, 2/e
Title | An Introduction to Computational Fluid Dynamics The Finite Volume Method, 2/e PDF eBook |
Author | H. K. Versteeg |
Publisher | Pearson Education India |
Pages | 518 |
Release | 2007 |
Genre | |
ISBN | 9788131720486 |
Advancement of Shock Capturing Computational Fluid Dynamics Methods
Title | Advancement of Shock Capturing Computational Fluid Dynamics Methods PDF eBook |
Author | Keiichi Kitamura |
Publisher | Springer Nature |
Pages | 136 |
Release | 2020-10-31 |
Genre | Science |
ISBN | 9811590117 |
This book offers a compact primer on advanced numerical flux functions in computational fluid dynamics (CFD). It comprehensively introduces readers to methods used at the forefront of compressible flow simulation research. Further, it provides a comparative evaluation of the methods discussed, helping readers select the best numerical flux function for their specific needs. The first two chapters of the book reviews finite volume methods and numerical functions, before discussing issues commonly encountered in connection with each. The third and fourth chapter, respectively, address numerical flux functions for ideal gases and more complex fluid flow cases— multiphase flows, supercritical fluids and magnetohydrodynamics. In closing, the book highlights methods that provide high levels of accuracy. The concise content provides an overview of recent advances in CFD methods for shockwaves. Further, it presents the author’s insights into the advantages and disadvantages of each method, helping readers implement the numerical methods in their own research.
Adaptive High-order Methods in Computational Fluid Dynamics
Title | Adaptive High-order Methods in Computational Fluid Dynamics PDF eBook |
Author | Z. J. Wang |
Publisher | World Scientific |
Pages | 471 |
Release | 2011 |
Genre | Science |
ISBN | 9814313181 |
This book consists of important contributions by world-renowned experts on adaptive high-order methods in computational fluid dynamics (CFD). It covers several widely used, and still intensively researched methods, including the discontinuous Galerkin, residual distribution, finite volume, differential quadrature, spectral volume, spectral difference, PNPM, and correction procedure via reconstruction methods. The main focus is applications in aerospace engineering, but the book should also be useful in many other engineering disciplines including mechanical, chemical and electrical engineering. Since many of these methods are still evolving, the book will be an excellent reference for researchers and graduate students to gain an understanding of the state of the art and remaining challenges in high-order CFD methods.
Computational Methods for Fluid Dynamics
Title | Computational Methods for Fluid Dynamics PDF eBook |
Author | Joel H Ferziger |
Publisher | |
Pages | 380 |
Release | 1996-02-14 |
Genre | |
ISBN | 9783642976520 |
Computational Fluid Dynamics
Title | Computational Fluid Dynamics PDF eBook |
Author | T. J. Chung |
Publisher | Cambridge University Press |
Pages | |
Release | 2010-09-27 |
Genre | Technology & Engineering |
ISBN | 1139493299 |
The second edition of Computational Fluid Dynamics represents a significant improvement from the first edition. However, the original idea of including all computational fluid dynamics methods (FDM, FEM, FVM); all mesh generation schemes; and physical applications to turbulence, combustion, acoustics, radiative heat transfer, multiphase flow, electromagnetic flow, and general relativity is still maintained. The second edition includes a new section on preconditioning for EBE-GMRES and a complete revision of the section on flowfield-dependent variation methods, which demonstrates more detailed computational processes and includes additional example problems. For those instructors desiring a textbook that contains homework assignments, a variety of problems for FDM, FEM and FVM are included in an appendix. To facilitate students and practitioners intending to develop a large-scale computer code, an example of FORTRAN code capable of solving compressible, incompressible, viscous, inviscid, 1D, 2D and 3D for all speed regimes using the flowfield-dependent variation method is made available.