Finite Elements For Solids Fluids And Optimization

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Finite Elements for Solids, Fluids, and Optimization

Author : G. A. Mohr
Publisher : Oxford University Press, USA
Page : 632 pages
File Size : 47,5 Mb
Release : 1992
Category : Law
ISBN : STANFORD:36105001597033

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Finite Elements for Solids, Fluids, and Optimization by G. A. Mohr Pdf

The finite element method is a numerical procedure for solving the ordinary and partial differential equations that commonly arise in engineering and mathematical physics. This text offers a complete, self-contained introduction to the theory and application of finite element methods in solid mechanics, fluid mechanics, and optimization. The authors' extensive practical experience in the field allows for a text well balanced between theory and application. Techniques for formatting finite element apparatus to problems are carefully explained. Programming techniques for solving resulting FEM problems also receive comprehensive treatment. Worked examples are scattered throughout the text.

Fluid-structure Interactions

Author : Thomas Richter
Publisher : Springer
Page : 436 pages
File Size : 46,6 Mb
Release : 2017-08-26
Category : Mathematics
ISBN : 9783319639703

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Fluid-structure Interactions by Thomas Richter Pdf

This book starts by introducing the fundamental concepts of mathematical continuum mechanics for fluids and solids and their coupling. Special attention is given to the derivation of variational formulations for the subproblems describing fluid- and solid-mechanics as well as the coupled fluid-structure interaction problem. Two monolithic formulations for fluid-structure interactions are described in detail: the well-established ALE formulation and the modern Fully Eulerian formulation, which can effectively deal with problems featuring large deformation and contact. Further, the book provides details on state-of-the-art discretization schemes for fluid- and solid-mechanics and considers the special needs of coupled problems with interface-tracking and interface-capturing techniques. Lastly, advanced topics like goal-oriented error estimation, multigrid solution and gradient-based optimization schemes are discussed in the context of fluid-structure interaction problems.

Basic Control Volume Finite Element Methods for Fluids and Solids

Author : Vaughan R. Voller
Publisher : World Scientific
Page : 185 pages
File Size : 40,6 Mb
Release : 2009
Category : Mathematics
ISBN : 9789812834980

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Basic Control Volume Finite Element Methods for Fluids and Solids by Vaughan R. Voller Pdf

The Control Volume Finite Element Method (CVFEM) is a hybrid numerical methods, combining the physics intuition of Control Volume Methods with the geometric flexibility of Finite Element Methods. The concept of this monograph is to introduce a common framework for the CVFEM solution so that it can be applied to both fluid flow and solid mechanics problems. To emphasize the essential ingredients, discussion focuses on the application to problems in two-dimensional domains which are discretized with linear-triangular meshes. This allows for a straightforward provision of the key information required to fully construct working CVFEM solutions of basic fluid flow and solid mechanics problems.

Finite Element Modeling and Simulation with ANSYS Workbench

Author : Xiaolin Chen,Yijun Liu
Publisher : CRC Press
Page : 416 pages
File Size : 40,8 Mb
Release : 2014-08-11
Category : Science
ISBN : 9781439873847

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Finite Element Modeling and Simulation with ANSYS Workbench by Xiaolin Chen,Yijun Liu Pdf

Learn Basic Theory and Software Usage from a Single Volume Finite Element Modeling and Simulation with ANSYS Workbench combines finite element theory with real-world practice. Providing an introduction to finite element modeling and analysis for those with no prior experience, and written by authors with a combined experience of 30 years teaching the subject, this text presents FEM formulations integrated with relevant hands-on applications using ANSYS Workbench for finite element analysis (FEA). Incorporating the basic theories of FEA and the use of ANSYS Workbench in the modeling and simulation of engineering problems, the book also establishes the FEM method as a powerful numerical tool in engineering design and analysis. Include FEA in Your Design and Analysis of Structures Using ANSYS Workbench The authors reveal the basic concepts in FEA using simple mechanics problems as examples, and provide a clear understanding of FEA principles, element behaviors, and solution procedures. They emphasize correct usage of FEA software, and techniques in FEA modeling and simulation. The material in the book discusses one-dimensional bar and beam elements, two-dimensional plane stress and plane strain elements, plate and shell elements, and three-dimensional solid elements in the analyses of structural stresses, vibrations and dynamics, thermal responses, fluid flows, optimizations, and failures. Contained in 12 chapters, the text introduces ANSYS Workbench through detailed examples and hands-on case studies, and includes homework problems and projects using ANSYS Workbench software that are provided at the end of each chapter. Covers solid mechanics and thermal/fluid FEA Contains ANSYS Workbench geometry input files for examples and case studies Includes two chapters devoted to modeling and solution techniques, design optimization, fatigue, and buckling failure analysis Provides modeling tips in case studies to provide readers an immediate opportunity to apply the skills they learn in a problem-solving context Finite Element Modeling and Simulation with ANSYS Workbench benefits upper-level undergraduate students in all engineering disciplines, as well as researchers and practicing engineers who use the finite element method to analyze structures.

Finite Element Method with Applications in Engineering

Author : Y. M. Desai
Publisher : Pearson Education India
Page : 492 pages
File Size : 40,9 Mb
Release : 2011
Category : Electronic books
ISBN : 8131724646

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Finite Element Method with Applications in Engineering by Y. M. Desai Pdf

The book explains the finite element method with various engineering applications to help students, teachers, engineers and researchers. It explains mathematical modeling of engineering problems and approximate methods of analysis and different approaches.

The Finite Element Method in Heat Transfer and Fluid Dynamics, Third Edition

Author : J. N. Reddy,D.K. Gartling
Publisher : CRC Press
Page : 515 pages
File Size : 53,9 Mb
Release : 2010-04-06
Category : Science
ISBN : 9781420085983

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The Finite Element Method in Heat Transfer and Fluid Dynamics, Third Edition by J. N. Reddy,D.K. Gartling Pdf

As Computational Fluid Dynamics (CFD) and Computational Heat Transfer (CHT) evolve and become increasingly important in standard engineering design and analysis practice, users require a solid understanding of mechanics and numerical methods to make optimal use of available software. The Finite Element Method in Heat Transfer and Fluid Dynamics, Third Edition illustrates what a user must know to ensure the optimal application of computational procedures—particularly the Finite Element Method (FEM)—to important problems associated with heat conduction, incompressible viscous flows, and convection heat transfer. This book follows the tradition of the bestselling previous editions, noted for their concise explanation and powerful presentation of useful methodology tailored for use in simulating CFD and CHT. The authors update research developments while retaining the previous editions’ key material and popular style in regard to text organization, equation numbering, references, and symbols. This updated third edition features new or extended coverage of: Coupled problems and parallel processing Mathematical preliminaries and low-speed compressible flows Mode superposition methods and a more detailed account of radiation solution methods Variational multi-scale methods (VMM) and least-squares finite element models (LSFEM) Application of the finite element method to non-isothermal flows Formulation of low-speed, compressible flows With its presentation of realistic, applied examples of FEM in thermal and fluid design analysis, this proven masterwork is an invaluable tool for mastering basic methodology, competently using existing simulation software, and developing simpler special-purpose computer codes. It remains one of the very best resources for understanding numerical methods used in the study of fluid mechanics and heat transfer phenomena.

What Every Engineer Should Know about Finite Element Analysis, Second Edition,

Author : John Brauer
Publisher : CRC Press
Page : 350 pages
File Size : 47,8 Mb
Release : 1993-05-05
Category : Technology & Engineering
ISBN : 0824789547

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What Every Engineer Should Know about Finite Element Analysis, Second Edition, by John Brauer Pdf

Summarizing the history and basic concepts of finite elements in a manner easily understood by all engineers, this concise reference describes specific finite element software applications to structural, thermal, electromagnetic and fluid analysis - detailing the latest developments in design optimization, finite element model building and results processing and future trends.;Requiring no previous knowledge of finite elements analysis, the Second Edition provides new material on: p elements; iterative solvers; design optimization; dynamic open boundary finite elements; electric circuits coupled to finite elements; anisotropic and complex materials; electromagnetic eigenvalues; and automated pre- and post-processing software.;Containing more than 120 tables and computer-drawn illustrations - and including two full-colour plates - What Every Engineer Should Know About Finite Element Analysis should be of use to engineers, engineering students and other professionals involved with product design or analysis.

Theories and Applications of Plate Analysis

Author : Rudolph Szilard
Publisher : John Wiley & Sons
Page : 1062 pages
File Size : 41,5 Mb
Release : 2004-01-02
Category : Technology & Engineering
ISBN : 0471429899

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Theories and Applications of Plate Analysis by Rudolph Szilard Pdf

This book by a renowned structural engineer offers comprehensive coverage of both static and dynamic analysis of plate behavior, including classical, numerical, and engineering solutions. It contains more than 100 worked examples showing step by step how the various types of analysis are performed.

The Finite Element Method for Mechanics of Solids with ANSYS Applications

Author : Ellis H. Dill
Publisher : CRC Press
Page : 500 pages
File Size : 44,7 Mb
Release : 2011-08-25
Category : Science
ISBN : 9781439845844

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The Finite Element Method for Mechanics of Solids with ANSYS Applications by Ellis H. Dill Pdf

While the finite element method (FEM) has become the standard technique used to solve static and dynamic problems associated with structures and machines, ANSYS software has developed into the engineer's software of choice to model and numerically solve those problems. An invaluable tool to help engineers master and optimize analysis, The Finite El

Elementary Thinking for the 21st Century

Author : Geoff A. Mohr, PhD
Publisher : Xlibris Corporation
Page : 289 pages
File Size : 50,5 Mb
Release : 2014-11-11
Category : Business & Economics
ISBN : 9781499031041

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Elementary Thinking for the 21st Century by Geoff A. Mohr, PhD Pdf

The book delves into a unique mix of the following areas: 1. The psychology of learning, memory, and thinking 2. Tools for critical thinking and assessment 3. Collective thinking of groups, corporations, and the public 4. Measurement of attitudes and market research 5. Mathematical logic and computer programming 6. Planning and scheduling techniques 7. Optimization techniques (both linear and non-linear) 8. World's first finite element method (FEM) models of distribution, inventory, and traffic flow systems and optimization of them 9. Mohr's flow ratio design (FRD) optimization technique 10. Econometric modeling techniques (some of them new) The book is the most modern, technically resourced, and innovative study of thinking to date and will prove useful to a wide range of people, including managers, planners, engineers, scientists, teachers, psychologists, and politicians.

Finite Element Multidisciplinary Analysis

Author : Kajal K. Gupta
Publisher : AIAA
Page : 458 pages
File Size : 47,8 Mb
Release : 2003
Category : Finite element method
ISBN : 1600860532

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Finite Element Multidisciplinary Analysis by Kajal K. Gupta Pdf

Annotation This book fills a gap within the finite element literature by addressing the challenges and developments in multidiscipli-nary analysis. Current developments include disciplines of structural mechanics, heat transfer, fluid mechanics, controls engineering and propulsion technology, and their interaction as encountered in many practical problems in aeronautical, aerospace, and mechanical engineering, among others. These topics are reflected in the 15 chapter titles of the book. Numerical problems are provided to illustrate the applicability of the techniques. Exercises may be solved either manually or by using suitable computer software. A version of the multidisciplinary analysis program STARS is available from the author. As a textbook, the book is useful at the senior undergraduate or graduate level. The practicing engineer will find it invaluable for solving full-scale practical problems.

Curing Cancer & Heart Disease

Author : Geoff A Mohr, PhD
Publisher : Xlibris Corporation
Page : 402 pages
File Size : 47,5 Mb
Release : 2024-06-23
Category : Health & Fitness
ISBN : 9781477101377

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Curing Cancer & Heart Disease by Geoff A Mohr, PhD Pdf

Characteristics Finite Element Methods in Computational Fluid Dynamics

Author : Joe Iannelli
Publisher : Springer Science & Business Media
Page : 744 pages
File Size : 50,5 Mb
Release : 2006-09-24
Category : Science
ISBN : 9783540453437

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Characteristics Finite Element Methods in Computational Fluid Dynamics by Joe Iannelli Pdf

This book details a systematic characteristics-based finite element procedure to investigate incompressible, free-surface and compressible flows. Several sections derive the Fluid Dynamics equations from first thermo-mechanics principles and develop this multi-dimensional and infinite-directional upstream procedure by combining a finite element discretization with an implicit non-linearly stable Runge-Kutta time integration for the numerical solution of the Euler and Navier Stokes equations.

Computational Methods for Solids and Fluids

Author : Adnan Ibrahimbegovic
Publisher : Springer
Page : 493 pages
File Size : 48,7 Mb
Release : 2016-02-12
Category : Technology & Engineering
ISBN : 9783319279961

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Computational Methods for Solids and Fluids by Adnan Ibrahimbegovic Pdf

This volume contains the best papers presented at the 2nd ECCOMAS International Conference on Multiscale Computations for Solids and Fluids, held June 10-12, 2015. Topics dealt with include multiscale strategy for efficient development of scientific software for large-scale computations, coupled probability-nonlinear-mechanics problems and solution methods, and modern mathematical and computational setting for multi-phase flows and fluid-structure interaction. The papers consist of contributions by six experts who taught short courses prior to the conference, along with several selected articles from other participants dealing with complementary issues, covering both solid mechanics and applied mathematics.