Mixed And Hybrid Finite Element Methods

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Mixed and Hybrid Finite Element Methods

Author : Franco Brezzi,Michel Fortin
Publisher : Springer Science & Business Media
Page : 361 pages
File Size : 45,8 Mb
Release : 2012-12-06
Category : Mathematics
ISBN : 9781461231721

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Mixed and Hybrid Finite Element Methods by Franco Brezzi,Michel Fortin Pdf

Research on non-standard finite element methods is evolving rapidly and in this text Brezzi and Fortin give a general framework in which the development is taking place. The presentation is built around a few classic examples: Dirichlet's problem, Stokes problem, Linear elasticity. The authors provide with this publication an analysis of the methods in order to understand their properties as thoroughly as possible.

Mixed Finite Element Methods and Applications

Author : Daniele Boffi,Franco Brezzi,Michel Fortin
Publisher : Springer Science & Business Media
Page : 692 pages
File Size : 47,9 Mb
Release : 2013-07-02
Category : Mathematics
ISBN : 9783642365195

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Mixed Finite Element Methods and Applications by Daniele Boffi,Franco Brezzi,Michel Fortin Pdf

Non-standard finite element methods, in particular mixed methods, are central to many applications. In this text the authors, Boffi, Brezzi and Fortin present a general framework, starting with a finite dimensional presentation, then moving on to formulation in Hilbert spaces and finally considering approximations, including stabilized methods and eigenvalue problems. This book also provides an introduction to standard finite element approximations, followed by the construction of elements for the approximation of mixed formulations in H(div) and H(curl). The general theory is applied to some classical examples: Dirichlet's problem, Stokes' problem, plate problems, elasticity and electromagnetism.

Hybrid and Incompatible Finite Element Methods

Author : Theodore H.H. Pian,Chang-Chun Wu
Publisher : CRC Press
Page : 395 pages
File Size : 41,5 Mb
Release : 2005-11-04
Category : Mathematics
ISBN : 9781135442217

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Hybrid and Incompatible Finite Element Methods by Theodore H.H. Pian,Chang-Chun Wu Pdf

While the theory and application of finite elements methods can be extended to incompatible, hybrid, and mixed element methods, important issues, such as determining the reliability of the solution of incompatible multivariable elements, along with a common perception of impracticality, have hindered the widespread implementation of these methods. Today, however, recent advances--many directly attributable to these authors--have allowed the development of the stability theory and abstract mathematics to useful tools. Hybrid and Incompatible Finite Element Methods introduces these advances in the theory and applications of incompatible and multivariable finite element methods. After an overview of the variation formulation of finite element methods in solid mechanics, the authors discuss the fundamental theory and systematically demonstrate the theoretical foundations of incompatible elements and their application to different problems in the theory of elasticity. They also introduce new ideas in the development of hybrid finite elements, study the numerical stability of the hybrid and mixed element, and establish the theory of zero energy deformation modes. The final chapters, explore applications to fracture problems, present a bound analysis for fracture parameters, and demonstrate an implementation of a finite element analysis program.

Hybrid and Incompatible Finite Element Methods

Author : Theodore H.H. Pian,Chang-Chun Wu
Publisher : CRC Press
Page : 400 pages
File Size : 44,8 Mb
Release : 2005-11-04
Category : Mathematics
ISBN : 9780203487693

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Hybrid and Incompatible Finite Element Methods by Theodore H.H. Pian,Chang-Chun Wu Pdf

While the theory and application of finite elements methods can be extended to incompatible, hybrid, and mixed element methods, important issues, such as determining the reliability of the solution of incompatible multivariable elements, along with a common perception of impracticality, have hindered the widespread implementation of these methods.

A Simple Introduction to the Mixed Finite Element Method

Author : Gabriel N. Gatica
Publisher : Springer Science & Business Media
Page : 142 pages
File Size : 48,9 Mb
Release : 2014-01-09
Category : Mathematics
ISBN : 9783319036953

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A Simple Introduction to the Mixed Finite Element Method by Gabriel N. Gatica Pdf

The main purpose of this book is to provide a simple and accessible introduction to the mixed finite element method as a fundamental tool to numerically solve a wide class of boundary value problems arising in physics and engineering sciences. The book is based on material that was taught in corresponding undergraduate and graduate courses at the Universidad de Concepcion, Concepcion, Chile, during the last 7 years. As compared with several other classical books in the subject, the main features of the present one have to do, on one hand, with an attempt of presenting and explaining most of the details in the proofs and in the different applications. In particular several results and aspects of the corresponding analysis that are usually available only in papers or proceedings are included here.

Handbook of Numerical Analysis

Author : Philippe G. Ciarlet,Jacques-Louis Lions
Publisher : Gulf Professional Publishing
Page : 502 pages
File Size : 54,8 Mb
Release : 1990
Category : Mathematics
ISBN : 0444512470

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Handbook of Numerical Analysis by Philippe G. Ciarlet,Jacques-Louis Lions Pdf

Hybrid and Mixed Finite Element Methods

Author : Satya N. Atluri
Publisher : Unknown
Page : 598 pages
File Size : 54,7 Mb
Release : 2024-06-26
Category : Electronic
ISBN : 0608154164

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Hybrid and Mixed Finite Element Methods by Satya N. Atluri Pdf

Mixed Finite Element Technologies

Author : Peter Wriggers,Carsten Carstensen
Publisher : Springer Science & Business Media
Page : 211 pages
File Size : 48,9 Mb
Release : 2009-06-16
Category : Technology & Engineering
ISBN : 9783211990940

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Mixed Finite Element Technologies by Peter Wriggers,Carsten Carstensen Pdf

Mixed finite element methods are a tool to solve complex engineering problems of different nature. This subject is treated in the volume from the engineering and the mathematical point. Different applications are considered which depict the value of mixed formulations in engineering on one side. On the other side the mathematical background is provided including proofs of convergence and stability of these methods and adequate solvers for mixed problems are discussed. This broad spectrum yields an indepth treatment of mixed methods from different perspectives.

Mathematical Aspects of Finite Element Methods

Author : I. Galligani,E. Magenes
Publisher : Springer
Page : 371 pages
File Size : 48,6 Mb
Release : 2006-11-15
Category : Mathematics
ISBN : 9783540371588

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Mathematical Aspects of Finite Element Methods by I. Galligani,E. Magenes Pdf

Hybrid Finite Element Method for Stress Analysis of Laminated Composites

Author : Suong Van Hoa,Wei Feng
Publisher : Springer Science & Business Media
Page : 304 pages
File Size : 40,8 Mb
Release : 2013-11-27
Category : Technology & Engineering
ISBN : 9781461557333

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Hybrid Finite Element Method for Stress Analysis of Laminated Composites by Suong Van Hoa,Wei Feng Pdf

This book has one single purpose: to present the development of the partial hybrid finite element method for the stress analysis of laminated composite structures. The reason for this presentation is because the authors believe that partial hybrid finite element method is more efficient that the displacement based finite element method for the stress analysis oflaminated composites. In fact, the examples in chapter 5 of this book show that the partial hybrid finite element method is about 5 times more efficient than the displacement based finite element method. Since there is a great need for accurate and efficient calculation of interlaminar stresses for the design using composites, the partial hybrid finite method does provide one possible solution. Hybrid finite method has been in existence since 1964 and a significant amount of work has been done on the topic. However, the authors are not aware of any systematic piece of literature that gives a detailed presentation of the method. Chapters of the displacement finite element method and the evolution 1 and 2 present a sununary of the hybrid finite element method. Hopefully, these two chapters can provide the readers with an appreciation for the difference between the displacement finite element method and the hybrid finite element. It also should prepare the readers for the introduction of partial hybrid finite element method presented in chapter 3.

Mixed Finite Elements, Compatibility Conditions, and Applications

Author : Daniele Boffi,Franco Brezzi,Leszek F. Demkowicz,Ricardo G. Durán,Richard S. Falk,Michel Fortin
Publisher : Springer
Page : 244 pages
File Size : 54,5 Mb
Release : 2008-04-01
Category : Mathematics
ISBN : 9783540783190

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Mixed Finite Elements, Compatibility Conditions, and Applications by Daniele Boffi,Franco Brezzi,Leszek F. Demkowicz,Ricardo G. Durán,Richard S. Falk,Michel Fortin Pdf

Since the early 70's, mixed finite elements have been the object of a wide and deep study by the mathematical and engineering communities. The fundamental role of this method for many application fields has been worldwide recognized and its use has been introduced in several commercial codes. An important feature of mixed finite elements is the interplay between theory and application. Discretization spaces for mixed schemes require suitable compatibilities, so that simple minded approximations generally do not work and the design of appropriate stabilizations gives rise to challenging mathematical problems. This volume collects the lecture notes of a C.I.M.E. course held in Summer 2006, when some of the most world recognized experts in the field reviewed the rigorous setting of mixed finite elements and revisited it after more than 30 years of practice. Applications, in this volume, range from traditional ones, like fluid-dynamics or elasticity, to more recent and active fields, like electromagnetism.

Advanced Finite Element Methods with Applications

Author : Thomas Apel,Ulrich Langer,Arnd Meyer,Olaf Steinbach
Publisher : Springer
Page : 428 pages
File Size : 42,7 Mb
Release : 2019-06-28
Category : Mathematics
ISBN : 9783030142445

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Advanced Finite Element Methods with Applications by Thomas Apel,Ulrich Langer,Arnd Meyer,Olaf Steinbach Pdf

Finite element methods are the most popular methods for solving partial differential equations numerically, and despite having a history of more than 50 years, there is still active research on their analysis, application and extension. This book features overview papers and original research articles from participants of the 30th Chemnitz Finite Element Symposium, which itself has a 40-year history. Covering topics including numerical methods for equations with fractional partial derivatives; isogeometric analysis and other novel discretization methods, like space-time finite elements and boundary elements; analysis of a posteriori error estimates and adaptive methods; enhancement of efficient solvers of the resulting systems of equations, discretization methods for partial differential equations on surfaces; and methods adapted to applications in solid and fluid mechanics, it offers readers insights into the latest results.

Compatible Spatial Discretizations

Author : Douglas N. Arnold,Pavel B. Bochev,Richard B. Lehoucq,Roy A. Nicolaides,Mikhail Shashkov
Publisher : Springer Science & Business Media
Page : 247 pages
File Size : 40,7 Mb
Release : 2007-01-26
Category : Mathematics
ISBN : 9780387380346

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Compatible Spatial Discretizations by Douglas N. Arnold,Pavel B. Bochev,Richard B. Lehoucq,Roy A. Nicolaides,Mikhail Shashkov Pdf

The IMA Hot Topics workshop on compatible spatialdiscretizations was held in 2004. This volume contains original contributions based on the material presented there. A unique feature is the inclusion of work that is representative of the recent developments in compatible discretizations across a wide spectrum of disciplines in computational science. Abstracts and presentation slides from the workshop can be accessed on the internet.

Trefftz and Fundamental Solution-Based Finite Element Methods

Author : Qing-Hua Qin
Publisher : Bentham Science Publishers
Page : 357 pages
File Size : 41,8 Mb
Release : 2021-09-07
Category : Mathematics
ISBN : 9789814998550

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Trefftz and Fundamental Solution-Based Finite Element Methods by Qing-Hua Qin Pdf

This reference explains hybrid-Trefftz finite element method (FEM). Readers are introduced to the basic concepts and general element formulations of the method. This is followed by topics on non-homogeneous parabolic problems, thermal analysis of composites, and heat conduction in nonlinear functionally graded materials. A brief summary of the fundamental solution based-FEM is also presented followed by a discussion on axisymmetric potential problems and the rotordynamic response of tapered composites. The book is rounded by chapters that cover the n-sided polygonal hybrid finite elements and analysis of piezoelectric materials. Key Features - Systematic presentation of 9 topics - Covers FEMs in two sections: 1) hybrid-Trefftz method and 2) fundamental FEM solutions - Bibliographic references - Includes solutions to problems in the numerical analysis of different material types - Includes solutions to some problems encountered in civil engineering (seepage, heat transfer, etc). This reference is suitable for scholars involved in advanced courses in mathematics and engineering (civil engineering/materials engineering). Professionals involved in developing analytical tools for materials and construction testing can also benefit from the methods presented in the book.

Mixed Finite Element Method

Author : Apostol Poceski
Publisher : Springer Science & Business Media
Page : 357 pages
File Size : 45,8 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9783642846762

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Mixed Finite Element Method by Apostol Poceski Pdf

In this book, based on 16 years of work on the finite element method, the author presents the essence of a new, direct approach to the FEM. The work is focused on the mixed method and shows how reliable results may be obtained with fewer equations than usual. The basic principles, the fundamentals and the essence of the FEM are presented, then the method is applied to the analysis of one, two, and three-dimensional problems. It is shown that mixed elements offer superior accuracy compared with stiffness elements. Finally, some new achievements and perspectives for further development are presented. The book is intended for undergraduate and graduate students, mathematicians, research engineers and practicing engineers. To understand the book, a familiarity with classical mechanics is sufficient.