Numerical Treatment Of Coupled Systems

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Numerical Treatment of Coupled Systems

Author : Wolfgang Hackbusch
Publisher : Springer Science & Business Media
Page : 222 pages
File Size : 51,6 Mb
Release : 2013-04-17
Category : Technology & Engineering
ISBN : 9783322868596

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Numerical Treatment of Coupled Systems by Wolfgang Hackbusch Pdf

The coupling considered in this volume may be of physical or numerical nature. Examples of the first kind are the solid-fluid interactions, microelectronic systems, and the coupled modelling in groundwater flow. Examples of the latter kind are the domain or subspace decomposition, the local defect correction method, and the very important FEM-BEM coupling.

Numerical Methods in Coupled Systems

Author : Roland W. Lewis
Publisher : Unknown
Page : 640 pages
File Size : 55,5 Mb
Release : 1984-05-11
Category : Technology & Engineering
ISBN : UOM:39015006402807

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Numerical Methods in Coupled Systems by Roland W. Lewis Pdf

The only book devoted entirely to coupled systems. It presents a unified and systematic approach to the subject, covering fluid-structure interaction, coupled numerical techniques, structure-structure interaction, geotechnical and electro-magnetic couplings, and much more. This topic will become increasingly important and this volume is significant as a guide to recent developments in the analysis of coupled systems.

Numerical Methods for Transient and Coupled Problems

Author : Roland W. Lewis
Publisher : Unknown
Page : 376 pages
File Size : 51,5 Mb
Release : 1987-05-08
Category : Technology & Engineering
ISBN : UCAL:B4383898

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Numerical Methods for Transient and Coupled Problems by Roland W. Lewis Pdf

This edited volume describes the latest developments in the use of numerical techniques for the solution of problems in transient and coupled systems.

Coupled Systems

Author : Juergen Geiser
Publisher : CRC Press
Page : 317 pages
File Size : 51,7 Mb
Release : 2014-02-14
Category : Mathematics
ISBN : 9781466578012

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Coupled Systems by Juergen Geiser Pdf

Efficient Methods to Solve Complex Coupled Systems Coupled Systems: Theory, Models, and Applications in Engineering explains how to solve complicated coupled models in engineering using analytical and numerical methods. It presents splitting multiscale methods to solve multiscale and multiphysics problems and describes analytical and numerical methods in time and space for evolution equations arising in engineering problems. The book discusses the effectiveness, simplicity, stability, and consistency of the methods in solving problems that occur in real-life engineering tasks. It shows how MATLAB® and Simulink® are used to implement the methods. The author also covers the coupling of separate, multiple, and logical scales in applications, including microscale, macroscale, multiscale, and multiphysics problems. Covering mathematical, algorithmic, and practical aspects, this book brings together innovative ideas in coupled systems and extends standard engineering tools to coupled models in materials and flow problems with respect to their scale dependencies and their influence on each time and spatial scale.

Analysis and Simulation of Multifield Problems

Author : Wolfgang L. Wendland,Messoud Efendiev
Publisher : Springer Science & Business Media
Page : 389 pages
File Size : 49,7 Mb
Release : 2012-11-10
Category : Technology & Engineering
ISBN : 9783540365273

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Analysis and Simulation of Multifield Problems by Wolfgang L. Wendland,Messoud Efendiev Pdf

The analysis and simulation of multifield problems have recently become one of the most actual and vivid areas of research. Although the individual subproblems of complex technical and physical phenomena often are understood separately, their interaction and coupling create not only new difficulties but also a complete new level and quality of interacting coupled field problems. Presented by leading experts this book includes recent results in these fields from the International Conference on Multifield Problems, April 8-10, 2002 at the University of Stuttgart, Germany.

Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment

Author : Zhangxin Chen,Richard E. Ewing,Joint Summer Research Conference on Fluid Flow and Transport in Porous Media: Mathematical and Numerical Treatment
Publisher : American Mathematical Soc.
Page : 538 pages
File Size : 52,5 Mb
Release : 2002
Category : Fluid dynamics
ISBN : 9780821828076

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Fluid Flow and Transport in Porous Media, Mathematical and Numerical Treatment by Zhangxin Chen,Richard E. Ewing,Joint Summer Research Conference on Fluid Flow and Transport in Porous Media: Mathematical and Numerical Treatment Pdf

The June 2001 conference brought together mathematicians, computational scientists, and engineers working on the mathematical and numerical treatment of fluid flow and transport in porous media. This collection of 43 papers from that conference reports on recent advances in network flow modeling, parallel computation, optimization, upscaling, uncertainty reduction, media characterization, and chemically reactive phenomena. Topics include modeling horizontal wells using hybrid grids in reservoir simulation, a high order Lagrangian scheme for flow through unsaturated porous media, and a streamline front tracking method for two- and three- phase flow. No index. Annotation copyrighted by Book News, Inc., Portland, OR.

Numerical Treatment of Multiphase Flows in Porous Media

Author : Zhangxin Chen,Richard E. Ewing,Zhong-Ci Shi
Publisher : Springer
Page : 446 pages
File Size : 51,7 Mb
Release : 2008-01-11
Category : Science
ISBN : 9783540454670

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Numerical Treatment of Multiphase Flows in Porous Media by Zhangxin Chen,Richard E. Ewing,Zhong-Ci Shi Pdf

The need to predict, understand, and optimize complex physical and c- mical processes occurring in and around the earth, such as groundwater c- tamination, oil reservoir production, discovering new oil reserves, and ocean hydrodynamics, has been increasingly recognized. Despite their seemingly disparate natures, these geoscience problems have many common mathe- tical and computational characteristics. The techniques used to describe and study them are applicable across a broad range of areas. The study of the above problems through physical experiments, mat- matical theory, and computational techniques requires interdisciplinary col- boration between engineers, mathematicians, computational scientists, and other researchers working in industry, government laboratories, and univ- sities. By bringing together such researchers, meaningful progress can be made in predicting, understanding, and optimizing physical and chemical processes. The International Workshop on Fluid Flow and Transport in Porous - dia was successfully held in Beijing, China, August 2{6, 1999. The aim of this workshop was to bring together applied mathematicians, computational scientists, and engineers working actively in the mathematical and nume- cal treatment of ?uid ?ow and transport in porous media. A broad range of researchers presented papers and discussed both problems and current, state-of-the-art techniques.

Computational Fluid and Solid Mechanics

Author : K.J. Bathe
Publisher : Elsevier
Page : 1768 pages
File Size : 47,5 Mb
Release : 2001-05-21
Category : Science
ISBN : 0080552811

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Computational Fluid and Solid Mechanics by K.J. Bathe Pdf

The MIT mission - "to bring together Industry and Academia and to nurture the next generation in computational mechanics is of great importance to reach the new level of mathematical modeling and numerical solution and to provide an exciting research environment for the next generation in computational mechanics." Mathematical modeling and numerical solution is today firmly established in science and engineering. Research conducted in almost all branches of scientific investigations and the design of systems in practically all disciplines of engineering can not be pursued effectively without, frequently, intensive analysis based on numerical computations. The world we live in has been classified by the human mind, for descriptive and analysis purposes, to consist of fluids and solids, continua and molecules; and the analyses of fluids and solids at the continuum and molecular scales have traditionally been pursued separately. Fundamentally, however, there are only molecules and particles for any material that interact on the microscopic and macroscopic scales. Therefore, to unify the analysis of physical systems and to reach a deeper understanding of the behavior of nature in scientific investigations, and of the behavior of designs in engineering endeavors, a new level of analysis is necessary. This new level of mathematical modeling and numerical solution does not merely involve the analysis of a single medium but must encompass the solution of multi-physics problems involving fluids, solids, and their interactions, involving multi-scale phenomena from the molecular to the macroscopic scales, and must include uncertainties in the given data and the solution results. Nature does not distinguish between fluids and solids and does not ever repeat itself exactly. This new level of analysis must also include, in engineering, the effective optimization of systems, and the modeling and analysis of complete life spans of engineering products, from design to fabrication, to possibly multiple repairs, to end of service.

Thermal-Hydraulics of Water Cooled Nuclear Reactors

Author : Francesco D'Auria
Publisher : Woodhead Publishing
Page : 1198 pages
File Size : 50,5 Mb
Release : 2017-05-18
Category : Technology & Engineering
ISBN : 9780081006795

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Thermal-Hydraulics of Water Cooled Nuclear Reactors by Francesco D'Auria Pdf

Thermal Hydraulics of Water-Cooled Nuclear Reactors reviews flow and heat transfer phenomena in nuclear systems and examines the critical contribution of this analysis to nuclear technology development. With a strong focus on system thermal hydraulics (SYS TH), the book provides a detailed, yet approachable, presentation of current approaches to reactor thermal hydraulic analysis, also considering the importance of this discipline for the design and operation of safe and efficient water-cooled and moderated reactors. Part One presents the background to nuclear thermal hydraulics, starting with a historical perspective, defining key terms, and considering thermal hydraulics requirements in nuclear technology. Part Two addresses the principles of thermodynamics and relevant target phenomena in nuclear systems. Next, the book focuses on nuclear thermal hydraulics modeling, covering the key areas of heat transfer and pressure drops, then moving on to an introduction to SYS TH and computational fluid dynamics codes. The final part of the book reviews the application of thermal hydraulics in nuclear technology, with chapters on V&V and uncertainty in SYS TH codes, the BEPU approach, and applications to new reactor design, plant lifetime extension, and accident analysis. This book is a valuable resource for academics, graduate students, and professionals studying the thermal hydraulic analysis of nuclear power plants and using SYS TH to demonstrate their safety and acceptability. Contains a systematic and comprehensive review of current approaches to the thermal-hydraulic analysis of water-cooled and moderated nuclear reactors Clearly presents the relationship between system level (top-down analysis) and component level phenomenology (bottom-up analysis) Provides a strong focus on nuclear system thermal hydraulic (SYS TH) codes Presents detailed coverage of the applications of thermal-hydraulics to demonstrate the safety and acceptability of nuclear power plants

Flow Simulation with High-Performance Computers II

Author : Ernst Heinrich Hirschel
Publisher : Springer Science & Business Media
Page : 584 pages
File Size : 45,5 Mb
Release : 2013-04-17
Category : Technology & Engineering
ISBN : 9783322898494

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Flow Simulation with High-Performance Computers II by Ernst Heinrich Hirschel Pdf

Der Band enthält den Abschlußbericht des DFG-Schwerpunktprogramms "Flußsimulation mit Höchstleistungsrechnern". Es führt die Arbeiten fort, die schon als Band 38 in der Reihe "Notes on Numerical Fluid Mechanics" erschienen sind.Work is reported, which was sponsored by the Deutsche Forschungsgemeinschaft from 1993 to 1995. Scientists from numerical mathematics, fluid mechanics, aerodynamics, and turbomachinery present their work on flow simulation with massively parallel systems, on the direct and large-eddy simulation of turbulence, and on mathematical foundations, general solution techniques and applications. Results are reported from benchmark computations of laminar flow around a cylinder, in which seventeen groups participated.

Mathematical Analysis and Simulation of Field Models in Accelerator Circuits

Author : Idoia Cortes Garcia
Publisher : Springer Nature
Page : 171 pages
File Size : 49,9 Mb
Release : 2021-01-04
Category : Technology & Engineering
ISBN : 9783030632731

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Mathematical Analysis and Simulation of Field Models in Accelerator Circuits by Idoia Cortes Garcia Pdf

This book deals with the analysis and development of numerical methods for the time-domain analysis of multiphysical effects in superconducting circuits of particle accelerator magnets. An important challenge is the simulation of “quenching”, i.e. the transition of a material from the superconducting to the normally electrically conductive state. The book analyses complex mathematical structures and presents models to simulate such quenching events in the context of generalized circuit elements. Furthermore, it proposes efficient parallelized algorithms with guaranteed convergence properties for the simulation of multiphysical problems. Spanning from theoretical concepts to applied research, and featuring rigorous mathematical presentations on one side, as well as simplified explanations of many complex issues, on the other side, this book provides graduate students and researchers with a comprehensive introduction on the state of the art and a source of inspiration for future research. Moreover, the proposed concepts and methods can be extended to the simulation of multiphysical phenomena in different application contexts.

Finite Element Analysis of Acoustic Scattering

Author : Frank Ihlenburg
Publisher : Springer Science & Business Media
Page : 226 pages
File Size : 50,5 Mb
Release : 2006-05-02
Category : Mathematics
ISBN : 9780387227009

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Finite Element Analysis of Acoustic Scattering by Frank Ihlenburg Pdf

A cognitive journey towards the reliable simulation of scattering problems using finite element methods, with the pre-asymptotic analysis of Galerkin FEM for the Helmholtz equation with moderate and large wave number forming the core of this book. Starting from the basic physical assumptions, the author methodically develops both the strong and weak forms of the governing equations, while the main chapter on finite element analysis is preceded by a systematic treatment of Galerkin methods for indefinite sesquilinear forms. In the final chapter, three dimensional computational simulations are presented and compared with experimental data. The author also includes broad reference material on numerical methods for the Helmholtz equation in unbounded domains, including Dirichlet-to-Neumann methods, absorbing boundary conditions, infinite elements and the perfectly matched layer. A self-contained and easily readable work.

Numerical Sound Synthesis

Author : Stefan Bilbao
Publisher : John Wiley & Sons
Page : 456 pages
File Size : 48,7 Mb
Release : 2009-09-03
Category : Computers
ISBN : 0470749024

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Numerical Sound Synthesis by Stefan Bilbao Pdf

Digital sound synthesis has long been approached using standard digital filtering techniques. Newer synthesis strategies, however, make use of physical descriptions of musical instruments, and allow for much more realistic and complex sound production and thereby synthesis becomes a problem of simulation. This book has a special focus on time domain finite difference methods presented within an audio framework. It covers time series and difference operators, and basic tools for the construction and analysis of finite difference schemes, including frequency-domain and energy-based methods, with special attention paid to problems inherent to sound synthesis. Various basic lumped systems and excitation mechanisms are covered, followed by a look at the 1D wave equation, linear bar and string vibration, acoustic tube modelling, and linear membrane and plate vibration. Various advanced topics, such as the nonlinear vibration of strings and plates, are given an elaborate treatment. Key features: Includes a historical overview of digital sound synthesis techniques, highlighting the links between the various physical modelling methodologies. A pedagogical presentation containing over 150 problems and programming exercises, and numerous figures and diagrams, and code fragments in the MATLAB® programming language helps the reader with limited experience of numerical methods reach an understanding of this subject. Offers a complete treatment of all of the major families of musical instruments, including certain audio effects. Numerical Sound Synthesis is suitable for audio and software engineers, and researchers in digital audio, sound synthesis and more general musical acoustics. Graduate students in electrical engineering, mechanical engineering or computer science, working on the more technical side of digital audio and sound synthesis, will also find this book of interest.

100 Volumes of 'Notes on Numerical Fluid Mechanics'

Author : Ernst Heinrich Hirschel,Egon Krause
Publisher : Springer Science & Business Media
Page : 507 pages
File Size : 49,6 Mb
Release : 2009-05-19
Category : Technology & Engineering
ISBN : 9783540708056

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100 Volumes of 'Notes on Numerical Fluid Mechanics' by Ernst Heinrich Hirschel,Egon Krause Pdf

In a book that will be required reading for engineers, physicists, and computer scientists, the editors have collated a number of articles on fluid mechanics, written by some of the world’s leading researchers and practitioners in this important subject area.