Fluid-Structure Interaction: An Introduction to Finite Element Coupling

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9781119952275: Fluid-Structure Interaction: An Introduction to Finite Element Coupling

Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author’s experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self–contained guide that is geared toward both students and practitioners of mechanical engineering. Composed of six chapters,

Fluid–Structure Interaction: An Introduction to Finite Element Coupling progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced order-modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi–analytical formulation & designed both to illustrate each numerical method and also to highlight a physical aspect of FSI. All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB, making the book a unique tool for self–learning and understanding the basics of the techniques for FSI, or can serve as verification and validation test cases of industrial FEM/BEM codes rendering the book valuable for code verification and validation purposes.

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From the Back Cover :

Fluid–Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductory approach to the general concepts of Finite and Boundary Element Methods (FEM and BEM) for FSI (fluid–structure interaction), from the mathematical formulation to the physical interpretation of numerical simulations. Composed of six chapters, the book progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced-order modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi-analytical formulations, designed to both illustrate each numerical method and to highlight a physical aspect of FSI. All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB®, making the book a unique tool for self-learning and understanding the basics of the techniques for FSI. Test cases for FEM/FEM or FEM/BEM coupling techniques also render the book valuable for code verification and validation purposes.

Key Features:

· Easy-to-read introduction to mathematical/numerical modelling of FSI

· Provides a first approach on ‘classical’ numerical techniques and is suited to undergraduate students as well as practicing engineers

· Illustrates the physics of structural-acoustics coupling with various examples of academic and industrial interest

· Is a good companion for the practice of Finite and Boundary Element Methods with any engineering simulation software

· Accompanied by a website hosting MATLAB® codes and Powerpoint slides

Based on the author’s experience in developing numerical codes for industrial applications and teaching FSI to both practicing engineers and within academia, Fluid–Structure Interaction: An Introduction to Finite Element Coupling is a comprehensive and self-contained guide for both students and practitioners of mechanical engineering.

About the Author :

Jean-François SIGRIST
DCNS Research, France

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Jean Francois Sigrist
Edité par John Wiley and Sons Ltd, United Kingdom (2015)
ISBN 10 : 1119952271 ISBN 13 : 9781119952275
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Description du livre John Wiley and Sons Ltd, United Kingdom, 2015. Hardback. État : New. 1. Auflage. Language: English . Brand New Book. Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author s experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self contained guide that is geared toward both students and practitioners of mechanical engineering. Composed of six chapters, Fluid Structure Interaction: An Introduction to Finite Element Coupling progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced order-modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi analytical formulation designed both to illustrate each numerical method and also to highlight a physical aspect of FSI.All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB, making the book a unique tool for self learning and understanding the basics of the techniques for FSI, or can serve as verification and validation test cases of industrial FEM/BEM codes rendering the book valuable for code verification and validation purposes. N° de réf. du libraire AAH9781119952275

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Jean Francois Sigrist
Edité par John Wiley and Sons Ltd, United Kingdom (2015)
ISBN 10 : 1119952271 ISBN 13 : 9781119952275
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Description du livre John Wiley and Sons Ltd, United Kingdom, 2015. Hardback. État : New. 1. Auflage. Language: English . Brand New Book. Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author s experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self contained guide that is geared toward both students and practitioners of mechanical engineering. Composed of six chapters, Fluid Structure Interaction: An Introduction to Finite Element Coupling progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced order-modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi analytical formulation designed both to illustrate each numerical method and also to highlight a physical aspect of FSI.All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB, making the book a unique tool for self learning and understanding the basics of the techniques for FSI, or can serve as verification and validation test cases of industrial FEM/BEM codes rendering the book valuable for code verification and validation purposes. N° de réf. du libraire AAH9781119952275

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Description du livre John Wiley and Sons Ltd. Hardback. État : new. BRAND NEW, Fluid-Structure Interaction: An Introduction to Finite Element Coupling, Jean Francois Sigrist, Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author s experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self contained guide that is geared toward both students and practitioners of mechanical engineering. Composed of six chapters, Fluid Structure Interaction: An Introduction to Finite Element Coupling progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced order-modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi analytical formulation & designed both to illustrate each numerical method and also to highlight a physical aspect of FSI. All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB, making the book a unique tool for self learning and understanding the basics of the techniques for FSI, or can serve as verification and validation test cases of industrial FEM/BEM codes rendering the book valuable for code verification and validation purposes. N° de réf. du libraire B9781119952275

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Description du livre État : New. Publisher/Verlag: Wiley & Sons | An Introduction to Finite Element Coupling | Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author's experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self-contained guide that is geared toward both students and practitioners of mechanical engineering. Composed of six chapters,Fluid-Structure Interaction: An Introduction to Finite Element Coupling progresses logically from formulations and applications involving structure and fluid dynamics, fluid and structure interactions and opens to reduced order-modelling for vibro-acoustic coupling. The author describes simple yet fundamental illustrative examples in detail, using analytical and/or semi-analytical formulation & designed both to illustrate each numerical method and also to highlight a physical aspect of FSI. All proposed examples are simple enough to be computed by the reader using standard computational tools such as MATLAB, making the book a unique tool for self-learning and understanding the basics of the techniques for FSI, or can serve as verification and validation test cases of industrial FEM/BEM codes rendering the book valuable for code verification and validation purposes. | Foreword vPreface viiImages Credits ix1 Fluid-Structure Interaction 11.1 A wide variety of problems 21.2 Analytical modelling of Fluid-Structure Interactions 31.2.1 Potential flow. Inertial coupling 41.2.2 Viscous flow. Viscous damping 81.2.3 Compressible flow. Radiation damping 101.3 Numerical simulation of Fluid-Structure Interactions 141.4 Finite element and boundary element methods 24References 252 Structure Finite Elements 272.1 Vibrations of an elastic structure 282.1.1 Modelling assumptions 282.1.2 Equations of motion 362.2 Finite Element Method: practical implementation 382.2.1 Weighted integral formulation 382.2.2 Finite elements 402.2.3 Elementary matrices 432.2.4 Mass and stiffness matrices 442.2.5 Calculating and assembling matrices 492.2.6 Modal analysis 542.3 Example: bending modes 572.3.1 Bending motion of a straight elastic beam 572.3.2 Bernoulli beam elements 582.3.3 Bending modes 622.4 Example : coupled bending/membrane modes 662.4.1 Bending and membrane motion of a circular elastic ring 662.4.2 Fourier component representation: 0D element 672.4.3 Bending/membrane modes 69References 793 Fluid Finite Elements 813.1 Fluid flow equations 823.2 Compressibility waves 913.2.1 Wave equation 913.2.2 Boundary conditions 953.3 Finite element method 1033.3.1 Pressure-based formulation 1033.3.2 Displacement-based formulations 1083.3.3 Finite element matrices 1113.4 Boundary element method 1133.4.1 Green function and Green's integral theorem 1133.4.2 Interior and exterior problems 1143.4.3 Direct and indirect boundary element method 1163.4.4 Boundary element matrices 1203.5 Example: Sloshing modes 1213.5.1 Circular reservoir with fluid free surface 1213.5.2 2D axi-symmetric elements with gravity 1243.5.3 Sloshing modes 1263.6 Example: Acoustic modes in an open reservoir 1283.6.1 Cylindrical acoustic opened cavity 1283.6.2 2D axi-symmetric elements with compressibility 1293.6.3 Acoustic modes 1303.7 Example: Acoustic modes in a closed reservoir 1323.7.1 Rectangular acoustic closed cavity 1323.7.2 2D fluid elements with compressibility 1343.7.3 Acoustic modes 1343.8 Example: Acoustic radiation in infinite fluid 1353.8.1 Pulsating ring in infinite acoustic fluid 1353.8.2 1D axi-symmetric element with radiation condition 1373.8.3 1D boundary elements 1383.8.4 Acoustic radiation 141References 1464 Inertial Coupling 1494.1 Mathematical modelling 1504.2 Added mass matrix 152. N° de réf. du libraire K9781119952275

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