Fast Boundary Element Methods in Engineering and Industrial Applications
Title | Fast Boundary Element Methods in Engineering and Industrial Applications PDF eBook |
Author | Ulrich Langer |
Publisher | Springer Science & Business Media |
Pages | 278 |
Release | 2012-02-02 |
Genre | Technology & Engineering |
ISBN | 3642256708 |
This volume contains eight state of the art contributions on mathematical aspects and applications of fast boundary element methods in engineering and industry. This covers the analysis and numerics of boundary integral equations by using differential forms, preconditioning of hp boundary element methods, the application of fast boundary element methods for solving challenging problems in magnetostatics, the simulation of micro electro mechanical systems, and for contact problems in solid mechanics. Other contributions are on recent results on boundary element methods for the solution of transient problems. This book is addressed to researchers, graduate students and practitioners working on and using boundary element methods. All contributions also show the great achievements of interdisciplinary research between mathematicians and engineers, with direct applications in engineering and industry.
Fast Multipole Boundary Element Method
Title | Fast Multipole Boundary Element Method PDF eBook |
Author | Yijun Liu |
Publisher | Cambridge University Press |
Pages | 255 |
Release | 2009-08-24 |
Genre | Technology & Engineering |
ISBN | 113947944X |
The fast multipole method is one of the most important algorithms in computing developed in the 20th century. Along with the fast multipole method, the boundary element method (BEM) has also emerged as a powerful method for modeling large-scale problems. BEM models with millions of unknowns on the boundary can now be solved on desktop computers using the fast multipole BEM. This is the first book on the fast multipole BEM, which brings together the classical theories in BEM formulations and the recent development of the fast multipole method. Two- and three-dimensional potential, elastostatic, Stokes flow, and acoustic wave problems are covered, supplemented with exercise problems and computer source codes. Applications in modeling nanocomposite materials, bio-materials, fuel cells, acoustic waves, and image-based simulations are demonstrated to show the potential of the fast multipole BEM. Enables students, researchers, and engineers to learn the BEM and fast multipole method from a single source.
Brain and Human Body Modeling 2020
Title | Brain and Human Body Modeling 2020 PDF eBook |
Author | Sergey N. Makarov |
Publisher | Springer Nature |
Pages | 395 |
Release | 2021 |
Genre | Biomedical engineering |
ISBN | 3030456234 |
The 41st Annual International Conference of the IEEE EMBS, took place between July 23 and 27, 2019, in Berlin, Germany. The focus was on "Biomedical engineering ranging from wellness to intensive care." This conference provided an opportunity for researchers from academia and industry to discuss a variety of topics relevant to EMBS and hosted the 4th Annual Invited Session on Computational Human Models. At this session, a bevy of research related to the development of human phantoms was presented, together with a substantial variety of practical applications explored through simulation.
Computational Acoustics of Noise Propagation in Fluids - Finite and Boundary Element Methods
Title | Computational Acoustics of Noise Propagation in Fluids - Finite and Boundary Element Methods PDF eBook |
Author | Steffen Marburg |
Publisher | Springer Science & Business Media |
Pages | 584 |
Release | 2008-02-27 |
Genre | Science |
ISBN | 3540774483 |
The book provides a survey of numerical methods for acoustics, namely the finite element method (FEM) and the boundary element method (BEM). It is the first book summarizing FEM and BEM (and optimization) for acoustics. The book shows that both methods can be effectively used for many other cases, FEM even for open domains and BEM for closed ones. Emphasis of the book is put on numerical aspects and on treatment of the exterior problem in acoustics, i.e. noise radiation.
Computational Mechanics
Title | Computational Mechanics PDF eBook |
Author | Zhenhan Yao |
Publisher | 清华大学出版社有限公司 |
Pages | 712 |
Release | 2004 |
Genre | Engineering design |
ISBN | 9787302093411 |
Boundary Element Analysis
Title | Boundary Element Analysis PDF eBook |
Author | Martin Schanz |
Publisher | Springer Science & Business Media |
Pages | 360 |
Release | 2007-04-29 |
Genre | Technology & Engineering |
ISBN | 3540475338 |
This volume contains eleven contributions on boundary integral equation and boundary element methods. Beside some historical and more analytical aspects in the formulation and analysis of boundary integral equations, modern fast boundary element methods are also described and analyzed from a mathematical point of view. In addition, the book presents engineering and industrial applications that show the ability of boundary element methods to solve challenging problems from different fields.
Advanced Finite Element Methods and Applications
Title | Advanced Finite Element Methods and Applications PDF eBook |
Author | Thomas Apel |
Publisher | Springer Science & Business Media |
Pages | 380 |
Release | 2012-07-16 |
Genre | Technology & Engineering |
ISBN | 3642303161 |
This volume on some recent aspects of finite element methods and their applications is dedicated to Ulrich Langer and Arnd Meyer on the occasion of their 60th birthdays in 2012. Their work combines the numerical analysis of finite element algorithms, their efficient implementation on state of the art hardware architectures, and the collaboration with engineers and practitioners. In this spirit, this volume contains contributions of former students and collaborators indicating the broad range of their interests in the theory and application of finite element methods. Topics cover the analysis of domain decomposition and multilevel methods, including hp finite elements, hybrid discontinuous Galerkin methods, and the coupling of finite and boundary element methods; the efficient solution of eigenvalue problems related to partial differential equations with applications in electrical engineering and optics; and the solution of direct and inverse field problems in solid mechanics.