Modelling of Mechanical Systems: Fluid-Structure Interaction (eBook)
800 Seiten
Elsevier Science (Verlag)
978-0-08-047540-0 (ISBN)
? Written by a world authority in the field in a clear, concise and accessible style
? Comprehensive coverage of mathematical techniques used to perform computer-based analytical studies and numerical simulations
? A key reference for mechanical engineers, researchers and graduate students
Written by an eminent authority in the field, Modelling of Mechanical Systems: Fluid-Structure Interaction is the third in a series of four self-contained volumes suitable for practitioners, academics and students alike in engineering, physical sciences and applied mechanics. The series skilfully weaves a theoretical and pragmatic approach to modelling mechanical systems and to analysing the responses of these systems. The study of fluid-structure interactions in this third volume covers the coupled dynamics of solids and fluids, restricted to the case of oscillatory motions about a state of static equilibrium. Physical and mathematical aspects of modelling these mechanisms are described in depth and illustrated by numerous worked out exercises.* Written by a world authority in the field in a clear, concise and accessible style * Comprehensive coverage of mathematical techniques used to perform computer-based analytical studies and numerical simulations * A key reference for mechanical engineers, researchers and graduate students
Cover 1
TOC$Contents 5
Preface 15
Introduction 17
CH$Chapter 1. Introduction to fluid-structure coupling 21
1.1. A short outline of fluid-structure coupled systems 22
1.2. Dynamic equations of fluid-structure coupled systems 30
1.3. Linear approximation of the fluid equations 46
CH$Chapter 2. Inertial coupling 65
2.1. Introduction 66
2.2. Discrete systems 68
2.3. Continuous systems 101
CH$Chapter 3. Surface waves 158
3.1. Introduction 159
3.2. Gravity waves 160
3.3. Surface tension 199
3.4. Sloshing modes 225
3.5. Fluid-structure interaction 236
CH$Chapter 4. Plane acoustical waves in pipe systems 263
4.1. Introduction 264
4.2. Free sound waves in pipe systems: plane and harmonic waves 267
4.3. Forced waves 316
4.4. Speed of sound 349
CH$Chapter 5. 3D Sound waves 373
5.1. 3D Standing sound waves (acoustic modes) 374
5.2. Guided wave modes and plane wave approximation 407
5.3. Forced waves 418
CH$Chapter 6. Vibroacoustic coupling 481
6.1. Local equilibrium equations 482
6.2. Piston-fluid column system 485
6.3. Vibroacoustic coupling in tube and ducts circuits 526
6.4. Application to a few problems 537
6.5. Finite element method 583
CH$Chapter 7. Energy dissipation by the fluid 601
7.1. Preliminary survey on linear modelisation of dissipation 602
7.2. Radiation damping 633
7.3. Dissipation induced by viscosity of the fluid 693
7.4. Dissipation in acoustic waves 717
Appendix A1. A few elements of thermodynamics 728
A1. Thermodynamic refresher 728
Appendix A2. Mechanical properties of common materials 738
A2.1. Phase diagram 738
A2.2. Gas properties 739
A2.3. Liquid properties 740
A2.4. Solid properties 743
Appendix A3. The Green identity 744
Appendix A4. Bessel functions 746
A4.1. Definition 746
A4.2. Bessel functions of the first kind 746
A4.3. Bessel functions of the second kind 747
A4.4. Recurrence relations 748
A4.5. Remarkable integrals 749
A4.6. Lommel integrals 749
A4.7. Hankel functions 749
A4.8. Asymptotic forms for large values of the argument 749
A4.9. Modified Bessel functions of the first and second kinds 750
Appendix A5. Spherical functions 752
A5.1. Legendre functions and polynomials 752
A5.2. Recurrence and orthogonality relations for Legendre polynomials 755
A5.3. Spherical Bessel functions 755
A5.4. Recurrence relations for spherical Bessel functions 756
A5.5. Spherical Hankel functions 757
Appendix A6. Specific impedances of several substances 759
References 761
IDX$Index 768
Colour plates 781
Erscheint lt. Verlag | 7.12.2006 |
---|---|
Sprache | englisch |
Themenwelt | Sachbuch/Ratgeber |
Naturwissenschaften ► Physik / Astronomie ► Strömungsmechanik | |
Technik ► Bauwesen | |
Technik ► Maschinenbau | |
ISBN-10 | 0-08-047540-X / 008047540X |
ISBN-13 | 978-0-08-047540-0 / 9780080475400 |
Haben Sie eine Frage zum Produkt? |
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