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An Assumed Stress Hybrid Finite Element for Three-Dimensional Elastic Structural Analysis

An Assumed Stress Hybrid Finite Element for Three-Dimensional Elastic Structural Analysis
Author: Sung Won Lee
Publisher:
Total Pages: 101
Release: 1974
Genre: Elastic solids
ISBN:

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An eight-node isoparametric hexahedral element based on the assumed stress hybrid approach is developed for three dimensional elastic structural analysis. The assumed stresses are represented by 24 unknown parameters. Two different ways of treating body forces are discussed and compared. A scheme of decomposing the assumed stress field to deal with incompressible or nearly incompressible material is also presented. Several example problems were solved to investigate the performance of the present element.


Hybrid Finite Element Method for Stress Analysis of Laminated Composites

Hybrid Finite Element Method for Stress Analysis of Laminated Composites
Author: Suong Van Hoa
Publisher: Springer Science & Business Media
Total Pages: 304
Release: 2013-11-27
Genre: Technology & Engineering
ISBN: 146155733X

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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.


NASA Technical Memorandum

NASA Technical Memorandum
Author:
Publisher:
Total Pages: 230
Release: 1988
Genre: Aeronautics
ISBN:

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Application of Hybrid Finite Elements to Structure Mechanics Problems

Application of Hybrid Finite Elements to Structure Mechanics Problems
Author: Theodore H. H. Pian
Publisher:
Total Pages: 66
Release: 1977
Genre:
ISBN:

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This report presents a summary of the results of this research program. A list of all publications under this contract is given. The research findings summarized here are listed under four categories: (1) rationalization and extensions of variational formulations of finite element methods, (2) development of crack elements, (3) analysis of geometrically nonlinear problems, and (4) analysis of material nonlinear problems. Two appendices which contain more detailed descriptions are (A) Creep and viscoplastic analysis by assumed stress hybrid finite elements and (B) Three-dimensional crack elements by hybrid stress model. (Author).


Advances in Adaptive Computational Methods in Mechanics

Advances in Adaptive Computational Methods in Mechanics
Author: P. Ladeveze
Publisher: Elsevier
Total Pages: 539
Release: 1998-06-23
Genre: Computers
ISBN: 0080525938

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Mastering modelling, and in particular numerical models, is becoming a crucial and central question in modern computational mechanics. Various tools, able to quantify the quality of a model with regard to another one taken as the reference, have been derived. Applied to computational strategies, these tools lead to new computational methods which are called "adaptive". The present book is concerned with outlining the state of the art and the latest advances in both these important areas. Papers are selected from a Workshop (Cachan 17-19 September 1997) which is the third of a series devoted to Error Estimators and Adaptivity in Computational Mechanics. The Cachan Workshop dealt with latest advances in adaptive computational methods in mechanics and their impacts on solving engineering problems. It was centered too on providing answers to simple questions such as: what is being used or can be used at present to solve engineering problems? What should be the state of art in the year 2000? What are the new questions involving error estimators and their applications?


Equilibrium Finite Element Formulations

Equilibrium Finite Element Formulations
Author: J. P. Moitinho de Almeida
Publisher: John Wiley & Sons
Total Pages: 315
Release: 2017-03-20
Genre: Technology & Engineering
ISBN: 1118424158

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A comprehensive treatment of the theory and practice of equilibrium finite element analysis in the context of solid and structural mechanics Equilibrium Finite Element Formulations is an up to date exposition on hybrid equilibrium finite elements, which are based on the direct approximation of the stress fields. The focus is on their derivation and on the advantages that strong forms of equilibrium can have, either when used independently or together with the more conventional displacement based elements. These elements solve two important problems of concern to computational structural mechanics: a rational basis for error estimation, which leads to bounds on quantities of interest that are vital for verification of the output and provision of outputs immediately useful to the engineer for structural design and assessment. Key features: Unique in its coverage of equilibrium – an essential reference work for those seeking solutions that are strongly equilibrated. The approach is not widely known, and should be of benefit to structural design and assessment. Thorough explanations of the formulations for: 2D and 3D continua, thick and thin bending of plates and potential problems; covering mainly linear aspects of behaviour, but also with some excursions into non-linearity. Highly relevant to the verification of numerical solutions, the basis for obtaining bounds of the errors is explained in detail. Simple illustrative examples are given, together with their physical interpretations. The most relevant issues regarding the computational implementation of this approach are presented. When strong equilibrium and finite elements are to be combined, the book is a must-have reference for postgraduate students, researchers in software development or numerical analysis, and industrial practitioners who want to keep up to date with progress in simulation tools.


Engine Structures

Engine Structures
Author:
Publisher:
Total Pages: 232
Release: 1988
Genre: Engines
ISBN:

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The Finite Element Method: Its Basis and Fundamentals

The Finite Element Method: Its Basis and Fundamentals
Author: Olek C Zienkiewicz
Publisher: Butterworth-Heinemann
Total Pages: 753
Release: 2013-08-31
Genre: Technology & Engineering
ISBN: 008095135X

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The Finite Element Method: Its Basis and Fundamentals offers a complete introduction to the basis of the finite element method, covering fundamental theory and worked examples in the detail required for readers to apply the knowledge to their own engineering problems and understand more advanced applications. This edition sees a significant rearrangement of the book’s content to enable clearer development of the finite element method, with major new chapters and sections added to cover: Weak forms Variational forms Multi-dimensional field problems Automatic mesh generation Plate bending and shells Developments in meshless techniques Focusing on the core knowledge, mathematical and analytical tools needed for successful application, The Finite Element Method: Its Basis and Fundamentals is the authoritative resource of choice for graduate level students, researchers and professional engineers involved in finite element-based engineering analysis. A proven keystone reference in the library of any engineer needing to understand and apply the finite element method in design and development Founded by an influential pioneer in the field and updated in this seventh edition by an author team incorporating academic authority and industrial simulation experience Features reworked and reordered contents for clearer development of the theory, plus new chapters and sections on mesh generation, plate bending, shells, weak forms and variational forms