Using HPC for Computational Fluid Dynamics
Title | Using HPC for Computational Fluid Dynamics PDF eBook |
Author | Shamoon Jamshed |
Publisher | Academic Press |
Pages | 227 |
Release | 2015-05-12 |
Genre | Science |
ISBN | 0128017511 |
Using HPC for Computational Fluid Dynamics: A Guide to High Performance Computing for CFD Engineers offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics. Beginning with an introduction to HPC, including its history and basic terminology, the book moves on to consider how modern supercomputers can be used to solve common CFD challenges, including the resolution of high density grids and dealing with the large file sizes generated when using commercial codes. Written to help early career engineers and post-graduate students compete in the fast-paced computational field where knowledge of CFD alone is no longer sufficient, the text provides a one-stop resource for all the technical information readers will need for successful HPC computation. - Offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics - Tailored to the needs of engineers seeking to run CFD computations in a HPC environment
High Performance Computing in Fluid Dynamics
Title | High Performance Computing in Fluid Dynamics PDF eBook |
Author | P. Wesseling |
Publisher | Springer Science & Business Media |
Pages | 285 |
Release | 2012-12-06 |
Genre | Technology & Engineering |
ISBN | 9400902719 |
Proceedings of the Summerschool on High Performance Computing in Fluid Dynamics, held at Delft University of Technology, the Netherlands, June 24-28 1996
Efficient High-Order Discretizations for Computational Fluid Dynamics
Title | Efficient High-Order Discretizations for Computational Fluid Dynamics PDF eBook |
Author | Martin Kronbichler |
Publisher | Springer Nature |
Pages | 314 |
Release | 2021-01-04 |
Genre | Technology & Engineering |
ISBN | 3030606104 |
The book introduces modern high-order methods for computational fluid dynamics. As compared to low order finite volumes predominant in today's production codes, higher order discretizations significantly reduce dispersion errors, the main source of error in long-time simulations of flow at higher Reynolds numbers. A major goal of this book is to teach the basics of the discontinuous Galerkin (DG) method in terms of its finite volume and finite element ingredients. It also discusses the computational efficiency of high-order methods versus state-of-the-art low order methods in the finite difference context, given that accuracy requirements in engineering are often not overly strict. The book mainly addresses researchers and doctoral students in engineering, applied mathematics, physics and high-performance computing with a strong interest in the interdisciplinary aspects of computational fluid dynamics. It is also well-suited for practicing computational engineers who would like to gain an overview of discontinuous Galerkin methods, modern algorithmic realizations, and high-performance implementations.
High-speed Computing in Fluid Dynamics
Title | High-speed Computing in Fluid Dynamics PDF eBook |
Author | François N. Frenkiel |
Publisher | |
Pages | 308 |
Release | 1969 |
Genre | Computational fluid dynamics |
ISBN |
Parallel Computational Fluid Dynamics 2007
Title | Parallel Computational Fluid Dynamics 2007 PDF eBook |
Author | Ismail H. Tuncer |
Publisher | Springer Science & Business Media |
Pages | 489 |
Release | 2009-04-21 |
Genre | Mathematics |
ISBN | 3540927441 |
At the 19th Annual Conference on Parallel Computational Fluid Dynamics held in Antalya, Turkey, in May 2007, the most recent developments and implementations of large-scale and grid computing were presented. This book, comprised of the invited and selected papers of this conference, details those advances, which are of particular interest to CFD and CFD-related communities. It also offers the results related to applications of various scientific and engineering problems involving flows and flow-related topics. Intended for CFD researchers and graduate students, this book is a state-of-the-art presentation of the relevant methodology and implementation techniques of large-scale computing.
Parallel Computational Fluid Dynamics
Title | Parallel Computational Fluid Dynamics PDF eBook |
Author | Kenli Li |
Publisher | Springer |
Pages | 626 |
Release | 2014-03-08 |
Genre | Computers |
ISBN | 3642539629 |
This book constitutes the refereed proceedings of the 25th International Conference on Parallel Computational Fluid Dynamics, ParCFD 2013, held in Changsha, China, in May 2013. The 35 revised full papers presented were carefully reviewed and selected from more than 240 submissions. The papers address issues such as parallel algorithms, developments in software tools and environments, unstructured adaptive mesh applications, industrial applications, atmospheric and oceanic global simulation, interdisciplinary applications and evaluation of computer architectures and software environments.
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.