La nouvelle approche hybride MAX-FEM pour la modélisation thermomécanique des couches minces

La nouvelle approche hybride MAX-FEM pour la modélisation thermomécanique des couches minces
Title La nouvelle approche hybride MAX-FEM pour la modélisation thermomécanique des couches minces PDF eBook
Author Abderrazzaq Ifis
Publisher
Pages 0
Release 2014
Genre
ISBN

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De cette thèse, une nouvelle méthode éléments finis hybride MAX-FEM dédiée à la modélisation thermomécanique des structures avec couches minces a été développée. Cette nouvelle approche se base sur un couplage analytique-numérique de deux méthodes : les Développements Asymptotiques Raccordés (MAE) et la Partition de l'Unité (PUM). Ce couplage consiste à construire l'enrichissement de la PUM par MAE est mène à une forme corrigée de la méthode des éléments finis classique (FEM). Cette correction est obtenue à travers des matrices de correction contenant les informations géométriques et caractéristiques du matériau de la couche mince. Les matrices introduites par l'approche MAX-FEM simplifient son implémentation numérique sous différents codes de calculs (MATLAB, ABAQUS, ...) et permettent l'obtention de la solution globale en un seul calcul. Les résultats obtenus par la MAX-FEM pour des applications 1D et 2D thermomécaniques montrent une très bonne précision avec un temps de calcul minimal et sans raffinement de maillage. De plus, la MAX-FEM surmonte les limitations de la MAE ainsi que celle de la PUM en termes de nombre de calculs, de la sensibilité aux propriétés des matériaux, des conditions aux limites ainsi que l'intégration numérique. Finalement, l'approche MAX-FEM est exploitée pour le développement d'un nouveau protocole expérimental dédié à la caractérisation thermique des couches minces. Ce protocole vise l'identification, de manière simple, de la conductivité thermique de la couche mince après son élaboration et sous les deux régimes transitoire et permanent. L'approche consiste à confronter la nature du transfert thermique d'une éprouvette homogène à une contenant une couche mince. La différence relevée est directement liée à la conductivité thermique de la couche mince. Les résultats obtenus, après réalisation du banc d'essais, montrent une bonne précision de l'approche avec une méthodologie de mesure simple à mettre en oeuvre.

Composite Materials

Composite Materials
Title Composite Materials PDF eBook
Author Jean-Marie Berthelot
Publisher Springer
Pages 0
Release 2013-02-06
Genre Technology & Engineering
ISBN 9781461268031

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Mechanical engineering, an engineering discipline borne of the needs of the in dustrial revolution, is once again asked to do its substantial share in the call for industrial renewal. The general call is urgent as we face profound issues of produc tivity and competitiveness that require engineering solutions, among others. The Mechanical Engineering Series features graduate texts and research monographs intended to address the need for information in contemporary areas of mechanical engineering. The series is conceived as a comprehensive one that covers a broad range of concentrations important to mechanical engineering graduate education and re search. We are fortunate to have a distinguished roster of consulting editors on the advisory board, each an expert in one of the areas of concentration. The names of the consulting editors are listed on the next page of this volume. The areas of concentration are applied mechanics, biomechanics, computational mechan ics, dynamic systems and control, energetics, mechanics of materials, processing, thermal science, and tribology.

Symmetric Galerkin Boundary Element Method

Symmetric Galerkin Boundary Element Method
Title Symmetric Galerkin Boundary Element Method PDF eBook
Author Alok Sutradhar
Publisher Springer Science & Business Media
Pages 276
Release 2008-09-26
Genre Technology & Engineering
ISBN 3540687726

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Symmetric Galerkin Boundary Element Method presents an introduction as well as recent developments of this accurate, powerful, and versatile method. The formulation possesses the attractive feature of producing a symmetric coefficient matrix. In addition, the Galerkin approximation allows standard continuous elements to be used for evaluation of hypersingular integrals. FEATURES • Written in a form suitable for a graduate level textbook as well as a self-learning tutorial in the field. • Covers applications in two-dimensional and three-dimensional problems of potential theory and elasticity. Additional basic topics involve axisymmetry, multi-zone and interface formulations. More advanced topics include fluid flow (wave breaking over a sloping beach), non-homogeneous media, functionally graded materials (FGMs), anisotropic elasticity, error estimation, adaptivity, and fracture mechanics. • Presents integral equations as a basis for the formulation of general symmetric Galerkin boundary element methods and their corresponding numerical implementation. • Designed to convey effective unified procedures for the treatment of singular and hypersingular integrals that naturally arise in the method. Symbolic codes using Maple® for singular-type integrations are provided and discussed in detail. • The user-friendly adaptive computer code BEAN (Boundary Element ANalysis), fully written in Matlab®, is available as a companion to the text. The complete source code, including the graphical user-interface (GUI), can be downloaded from the web site http://www.ghpaulino.com/SGBEM_book. The source code can be used as the basis for building new applications, and should also function as an effective teaching tool. To facilitate the use of BEAN, a video tutorial and a library of practical examples are provided.

Acoustics, Aeroacoustics and Vibrations

Acoustics, Aeroacoustics and Vibrations
Title Acoustics, Aeroacoustics and Vibrations PDF eBook
Author Fabien Anselmet
Publisher John Wiley & Sons
Pages 529
Release 2016-01-07
Genre Technology & Engineering
ISBN 1119178398

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This didactic book presents the main elements of acoustics, aeroacoustics and vibrations. Illustrated with numerous concrete examples linked to solid and fluid continua, Acoustics, Aeroacoustics and Vibrations proposes a selection of applications encountered in the three fields, whether in room acoustics, transport, energy production systems or environmental problems. Theoretical approaches enable us to analyze the different processes in play. Typical results, mostly from numerical simulations, are used to illustrate the main phenomena (fluid acoustics, radiation, diffraction, vibroacoustics, etc.).

Terra 2008

Terra 2008
Title Terra 2008 PDF eBook
Author Leslie Rainer
Publisher Getty Publications
Pages 438
Release 2011-06-14
Genre Architecture
ISBN 1606060430

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Earthen architecture constitutes one of the most diverse forms of cultural heritage and one of the most challenging to preserve. It dates from all periods and is found on all continents but is particularly prevalent in Africa, where it has been a building tradition for centuries. Sites range from ancestral cities in Mali to the palaces of Abomey in Benin, from monuments and mosques in Iran and Buddhist temples on the Silk Road to Spanish missions in California. This volume's sixty-four papers address such themes as earthen architecture in Mali, the conservation of living sites, local knowledge systems and intangible aspects, seismic and other natural forces, the conservation and management of archaeological sites, research advances, and training.

Global Burden of Disease and Risk Factors

Global Burden of Disease and Risk Factors
Title Global Burden of Disease and Risk Factors PDF eBook
Author Alan D. Lopez
Publisher World Bank Publications
Pages 511
Release 2006-04-02
Genre Medical
ISBN 0821362631

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Strategic health planning, the cornerstone of initiatives designed to achieve health improvement goals around the world, requires an understanding of the comparative burden of diseases and injuries, their corresponding risk factors and the likely effects of invervention options. The Global Burden of Disease framework, originally published in 1990, has been widely adopted as the preferred method for health accounting and has become the standard to guide the setting of health research priorities. This publication sets out an updated assessment of the situation, with an analysis of trends observed since 1990 and a chapter on the sensitivity of GBD estimates to various sources of uncertainty in methods and data.

Thermal Quadrupoles

Thermal Quadrupoles
Title Thermal Quadrupoles PDF eBook
Author Denis Maillet
Publisher
Pages 392
Release 2000-11-17
Genre Mathematics
ISBN

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This superb text describes a novel and powerful method for allowing design engineers to firstly model a linear problem in heat conduction, then build a solution in an explicit form and finally obtain a numerical solution. It constitutes a modelling and calculation tool based on a very efficient and systemic methodological approach. Solving the heat equations through integral transforms does not constitute a new subject. However, finding a solution generally constitutes only one part of the problem. In design problems, an initial thermal design has to be tested through the calculation of the temperature or flux field, followed by an analysis of this field in terms of constraints. A modified design is then proposed, followed by a new thermal field calculation, and so on until the right design is found. The thermal quadrupole method allows this often painful iterative procedure to be removed by allowing only one calculation. The chapters in this book increase in complexity from a rapid presentation of the method for one dimensional transient problems in chapter one, to non uniform boundary conditions or inhomogeneous media in chapter six. In addition, a wide range of corrected problems of contemporary interest are presented mainly in chapters three and six with their numerical implementation in MATLAB (r) language. This book covers the whole scope of linear problems and presents a wide range of concrete issues of contemporary interest such as harmonic excitations of buildings, transfer in composite media, thermal contact resistance and moving material heat transfer. Extensions of this method to coupled transfers in a semi-transparent medium and to mass transfer in porous media are considered respectively in chapters seven and eight. Chapter nine is devoted to practical numerical methods that can be used to inverse the Laplace transform. Written from an engineering perspective, with applications to real engineering problems, this book will be of significant interest not only to researchers, lecturers and graduate students in mechanical engineering (thermodynamics) and process engineers needing to model a heat transfer problem to obtain optimized operating conditions, but also to researchers interested in the simulation or design of experiments where heat transfer play a significant role.