Data Parallel Algorithms for the Finite Element Method
Author: Kapil K. Mathur
Publisher:
Published: 1990
Total Pages: 22
ISBN-13:
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Author: Kapil K. Mathur
Publisher:
Published: 1990
Total Pages: 22
ISBN-13:
DOWNLOAD EBOOKAuthor: Karl Heinz Hoffmann
Publisher: Springer Science & Business Media
Published: 2007-06-24
Total Pages: 365
ISBN-13: 3540335412
DOWNLOAD EBOOKThis book presents advances in high performance computing as well as advances accomplished using high performance computing. It contains a collection of papers presenting results achieved in the collaboration of scientists from computer science, mathematics, physics, and mechanical engineering. From science problems to mathematical algorithms and on to the effective implementation of these algorithms on massively parallel and cluster computers, the book presents state-of-the-art methods and technology, and exemplary results in these fields.
Author: Vipin Kumar
Publisher: Addison Wesley Longman
Published: 1994
Total Pages: 632
ISBN-13:
DOWNLOAD EBOOKMathematics of Computing -- Parallelism.
Author: Tse-yun Feng
Publisher: CRC Press
Published: 1991-07-30
Total Pages: 372
ISBN-13: 9780849301933
DOWNLOAD EBOOKAuthor: Andrea Toselli
Publisher: Springer Science & Business Media
Published: 2006-06-20
Total Pages: 454
ISBN-13: 3540266623
DOWNLOAD EBOOKThis book offers a comprehensive presentation of some of the most successful and popular domain decomposition preconditioners for finite and spectral element approximations of partial differential equations. It places strong emphasis on both algorithmic and mathematical aspects. It covers in detail important methods such as FETI and balancing Neumann-Neumann methods and algorithms for spectral element methods.
Author: Ioannis Koutromanos
Publisher: John Wiley & Sons
Published: 2018-02-12
Total Pages: 724
ISBN-13: 1119260086
DOWNLOAD EBOOKAn introductory textbook covering the fundamentals of linear finite element analysis (FEA) This book constitutes the first volume in a two-volume set that introduces readers to the theoretical foundations and the implementation of the finite element method (FEM). The first volume focuses on the use of the method for linear problems. A general procedure is presented for the finite element analysis (FEA) of a physical problem, where the goal is to specify the values of a field function. First, the strong form of the problem (governing differential equations and boundary conditions) is formulated. Subsequently, a weak form of the governing equations is established. Finally, a finite element approximation is introduced, transforming the weak form into a system of equations where the only unknowns are nodal values of the field function. The procedure is applied to one-dimensional elasticity and heat conduction, multi-dimensional steady-state scalar field problems (heat conduction, chemical diffusion, flow in porous media), multi-dimensional elasticity and structural mechanics (beams/shells), as well as time-dependent (dynamic) scalar field problems, elastodynamics and structural dynamics. Important concepts for finite element computations, such as isoparametric elements for multi-dimensional analysis and Gaussian quadrature for numerical evaluation of integrals, are presented and explained. Practical aspects of FEA and advanced topics, such as reduced integration procedures, mixed finite elements and verification and validation of the FEM are also discussed. Provides detailed derivations of finite element equations for a variety of problems. Incorporates quantitative examples on one-dimensional and multi-dimensional FEA. Provides an overview of multi-dimensional linear elasticity (definition of stress and strain tensors, coordinate transformation rules, stress-strain relation and material symmetry) before presenting the pertinent FEA procedures. Discusses practical and advanced aspects of FEA, such as treatment of constraints, locking, reduced integration, hourglass control, and multi-field (mixed) formulations. Includes chapters on transient (step-by-step) solution schemes for time-dependent scalar field problems and elastodynamics/structural dynamics. Contains a chapter dedicated to verification and validation for the FEM and another chapter dedicated to solution of linear systems of equations and to introductory notions of parallel computing. Includes appendices with a review of matrix algebra and overview of matrix analysis of discrete systems. Accompanied by a website hosting an open-source finite element program for linear elasticity and heat conduction, together with a user tutorial. Fundamentals of Finite Element Analysis: Linear Finite Element Analysis is an ideal text for undergraduate and graduate students in civil, aerospace and mechanical engineering, finite element software vendors, as well as practicing engineers and anybody with an interest in linear finite element analysis.
Author: Afonso Ferreira
Publisher: Springer Science & Business Media
Published: 1995-08-25
Total Pages: 428
ISBN-13: 9783540603214
DOWNLOAD EBOOKProceedings -- Parallel Computing.
Author: I. M. Smith
Publisher: John Wiley & Sons
Published: 2005-06-10
Total Pages: 649
ISBN-13: 0470011246
DOWNLOAD EBOOKThis title demonstrates how to develop computer programmes which solve specific engineering problems using the finite element method. It enables students, scientists and engineers to assemble their own computer programmes to produce numerical results to solve these problems. The first three editions of Programming the Finite Element Method established themselves as an authority in this area. This fully revised 4th edition includes completely rewritten programmes with a unique description and list of parallel versions of programmes in Fortran 90. The Fortran programmes and subroutines described in the text will be made available on the Internet via anonymous ftp, further adding to the value of this title.
Author: Erricos John Kontoghiorghes
Publisher: CRC Press
Published: 2005-12-21
Total Pages: 560
ISBN-13: 9781420028683
DOWNLOAD EBOOKTechnological improvements continue to push back the frontier of processor speed in modern computers. Unfortunately, the computational intensity demanded by modern research problems grows even faster. Parallel computing has emerged as the most successful bridge to this computational gap, and many popular solutions have emerged based on its concepts
Author: National Research Council Canada
Publisher: NRC Research Press
Published: 2003
Total Pages: 354
ISBN-13: 9780660190280
DOWNLOAD EBOOKThe 17th annual International Symposium on High Performance Systems and Applications (HPCS 2003) and the first OSCAR Symposium were held in Sherbrooke, Quebec Canada, May 11-14, 2003. The proceedings cover various areas of High Performance Computing, from specific scientific applications to computer architecture. OSCAR is an Open Source clustering software suite for building, maintaining, and using high performance clusters.