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Acoustics [[electronic resource] ] : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Acoustics [[electronic resource] ] : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Pubbl/distr/stampa San Diego, : Academic Press, c1999
Descrizione fisica 1 online resource (335 p.)
Disciplina 534
Altri autori (Persone) FilippiP (Paul)
Soggetto topico Sound
Sound - Transmission
Soggetto genere / forma Electronic books.
ISBN 1-281-03664-1
9786611036645
0-08-049855-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Acoustics: Basic Physics, Theory and Methods; Copyright Page; Contents; Foreword; Preface; Chapter 1. Physical Basis of Acoustics; Introduction; 1.1. Review of mechanics of continua; 1.2. Elementary acoustics; 1.3. Elementary acoustics of solids: Elementary elastic waves; 1.4. Conclusion; Bibliography; Chapter 2. Acoustics of Enclosures; Introduction; 2.1. General statement of the problem; 2.2. Sound field inside a parallelepipedic enclosure: free oscillations and eigenmodes; 2.3. Transient phenomena - reverberation time
2.4. Acoustic field inside a circular enclosure: introduction to the method of separation of variables2.5. Enclosures bounded by plane surfaces: introduction to the method of images; 2.6. General case: introduction to the Green's representation of acoustic fields; Bibliography; Chapter 3. Diffraction of Acoustic Waves and Boundary Integral Equations; Introduction; 3.1. Radiation of simple sources in free space; 3.2. Green's representation of the solution of linear acoustics boundary value problems; 3.3. Representation of a diffracted field by a layer potential
3.4. Boundary integral equations3.5. Two-dimensional Neumann problem for a circular boundary; Bibliography; Chapter 4. Outdoor Sound Propagation; Introduction; 4.1. Ground effect in a homogeneous atmosphere; 4.2. Diffraction by an obstacle in homogeneous atmosphere; 4.3. Sound propagation in an inhomogeneous medium; Bibliography; Chapter 5. Analytic Expansions and Approximation Methods; Introduction; 5.1. Asymptotic expansions obtained from integral expressions; 5.2. Kirchhoff approximation; 5.3. Neumann series; 5.4. W.K.B. method. Born and Rytov approximations
5.5. Image method, ray method, geometrical theory of diffraction5.6. Parabolic approximation; 5.7. Wiener-Hopf method; Bibliography; Chapter 6. Boundary Integral Equation Methods - Numerical Techniques; Introduction; 6.1. Techniques of solution of integral equations; 6.2. Eigenvalue problems; 6.3. Singularities; Bibliography; Chapter 7. Introduction to Guided Waves; Introduction; 7.1. Definitions and general remarks; 7.2. The problem of the waveguide; 7.3. Radiation of sources in ducts with ' sharp ' interfaces; 7.4. Shallow water guide; 7.5. Duct with absorbing walls
7.6. Ducts with varying cross section7.7. Conclusion; Bibliography; Chapter 8. Transmission and Radiation of Sound by Thin Plates; Introduction; 8.1. A simple one-dimensional example; 8.2. Equation governing the normal displacement of a thin elastic plate; 8.3. Infinite fluid-loaded thin plate; 8.4. Finite-dimension baffled plate: expansions of the solution into a series of eigenmodes and resonance modes; 8.5. Finite-dimension baffled plate: boundary integrals representation of the solution and boundary integral equations; 8.6. Conclusion; Bibliography; Chapter 9. Problems
Mathematical Appendix: Notations and Definitions
Record Nr. UNINA-9910458672403321
San Diego, : Academic Press, c1999
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Acoustics [[electronic resource] ] : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Acoustics [[electronic resource] ] : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Pubbl/distr/stampa San Diego, : Academic Press, c1999
Descrizione fisica 1 online resource (335 p.)
Disciplina 534
Altri autori (Persone) FilippiP (Paul)
Soggetto topico Sound
Sound - Transmission
ISBN 1-281-03664-1
9786611036645
0-08-049855-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Acoustics: Basic Physics, Theory and Methods; Copyright Page; Contents; Foreword; Preface; Chapter 1. Physical Basis of Acoustics; Introduction; 1.1. Review of mechanics of continua; 1.2. Elementary acoustics; 1.3. Elementary acoustics of solids: Elementary elastic waves; 1.4. Conclusion; Bibliography; Chapter 2. Acoustics of Enclosures; Introduction; 2.1. General statement of the problem; 2.2. Sound field inside a parallelepipedic enclosure: free oscillations and eigenmodes; 2.3. Transient phenomena - reverberation time
2.4. Acoustic field inside a circular enclosure: introduction to the method of separation of variables2.5. Enclosures bounded by plane surfaces: introduction to the method of images; 2.6. General case: introduction to the Green's representation of acoustic fields; Bibliography; Chapter 3. Diffraction of Acoustic Waves and Boundary Integral Equations; Introduction; 3.1. Radiation of simple sources in free space; 3.2. Green's representation of the solution of linear acoustics boundary value problems; 3.3. Representation of a diffracted field by a layer potential
3.4. Boundary integral equations3.5. Two-dimensional Neumann problem for a circular boundary; Bibliography; Chapter 4. Outdoor Sound Propagation; Introduction; 4.1. Ground effect in a homogeneous atmosphere; 4.2. Diffraction by an obstacle in homogeneous atmosphere; 4.3. Sound propagation in an inhomogeneous medium; Bibliography; Chapter 5. Analytic Expansions and Approximation Methods; Introduction; 5.1. Asymptotic expansions obtained from integral expressions; 5.2. Kirchhoff approximation; 5.3. Neumann series; 5.4. W.K.B. method. Born and Rytov approximations
5.5. Image method, ray method, geometrical theory of diffraction5.6. Parabolic approximation; 5.7. Wiener-Hopf method; Bibliography; Chapter 6. Boundary Integral Equation Methods - Numerical Techniques; Introduction; 6.1. Techniques of solution of integral equations; 6.2. Eigenvalue problems; 6.3. Singularities; Bibliography; Chapter 7. Introduction to Guided Waves; Introduction; 7.1. Definitions and general remarks; 7.2. The problem of the waveguide; 7.3. Radiation of sources in ducts with ' sharp ' interfaces; 7.4. Shallow water guide; 7.5. Duct with absorbing walls
7.6. Ducts with varying cross section7.7. Conclusion; Bibliography; Chapter 8. Transmission and Radiation of Sound by Thin Plates; Introduction; 8.1. A simple one-dimensional example; 8.2. Equation governing the normal displacement of a thin elastic plate; 8.3. Infinite fluid-loaded thin plate; 8.4. Finite-dimension baffled plate: expansions of the solution into a series of eigenmodes and resonance modes; 8.5. Finite-dimension baffled plate: boundary integrals representation of the solution and boundary integral equations; 8.6. Conclusion; Bibliography; Chapter 9. Problems
Mathematical Appendix: Notations and Definitions
Record Nr. UNINA-9910784643403321
San Diego, : Academic Press, c1999
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Acoustics : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Acoustics : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Edizione [1st ed.]
Pubbl/distr/stampa San Diego, : Academic Press, c1999
Descrizione fisica 1 online resource (335 p.)
Disciplina 534
Altri autori (Persone) FilippiP (Paul)
Soggetto topico Sound
Sound - Transmission
ISBN 1-281-03664-1
9786611036645
0-08-049855-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Acoustics: Basic Physics, Theory and Methods; Copyright Page; Contents; Foreword; Preface; Chapter 1. Physical Basis of Acoustics; Introduction; 1.1. Review of mechanics of continua; 1.2. Elementary acoustics; 1.3. Elementary acoustics of solids: Elementary elastic waves; 1.4. Conclusion; Bibliography; Chapter 2. Acoustics of Enclosures; Introduction; 2.1. General statement of the problem; 2.2. Sound field inside a parallelepipedic enclosure: free oscillations and eigenmodes; 2.3. Transient phenomena - reverberation time
2.4. Acoustic field inside a circular enclosure: introduction to the method of separation of variables2.5. Enclosures bounded by plane surfaces: introduction to the method of images; 2.6. General case: introduction to the Green's representation of acoustic fields; Bibliography; Chapter 3. Diffraction of Acoustic Waves and Boundary Integral Equations; Introduction; 3.1. Radiation of simple sources in free space; 3.2. Green's representation of the solution of linear acoustics boundary value problems; 3.3. Representation of a diffracted field by a layer potential
3.4. Boundary integral equations3.5. Two-dimensional Neumann problem for a circular boundary; Bibliography; Chapter 4. Outdoor Sound Propagation; Introduction; 4.1. Ground effect in a homogeneous atmosphere; 4.2. Diffraction by an obstacle in homogeneous atmosphere; 4.3. Sound propagation in an inhomogeneous medium; Bibliography; Chapter 5. Analytic Expansions and Approximation Methods; Introduction; 5.1. Asymptotic expansions obtained from integral expressions; 5.2. Kirchhoff approximation; 5.3. Neumann series; 5.4. W.K.B. method. Born and Rytov approximations
5.5. Image method, ray method, geometrical theory of diffraction5.6. Parabolic approximation; 5.7. Wiener-Hopf method; Bibliography; Chapter 6. Boundary Integral Equation Methods - Numerical Techniques; Introduction; 6.1. Techniques of solution of integral equations; 6.2. Eigenvalue problems; 6.3. Singularities; Bibliography; Chapter 7. Introduction to Guided Waves; Introduction; 7.1. Definitions and general remarks; 7.2. The problem of the waveguide; 7.3. Radiation of sources in ducts with ' sharp ' interfaces; 7.4. Shallow water guide; 7.5. Duct with absorbing walls
7.6. Ducts with varying cross section7.7. Conclusion; Bibliography; Chapter 8. Transmission and Radiation of Sound by Thin Plates; Introduction; 8.1. A simple one-dimensional example; 8.2. Equation governing the normal displacement of a thin elastic plate; 8.3. Infinite fluid-loaded thin plate; 8.4. Finite-dimension baffled plate: expansions of the solution into a series of eigenmodes and resonance modes; 8.5. Finite-dimension baffled plate: boundary integrals representation of the solution and boundary integral equations; 8.6. Conclusion; Bibliography; Chapter 9. Problems
Mathematical Appendix: Notations and Definitions
Record Nr. UNINA-9911108523003321
San Diego, : Academic Press, c1999
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Acoustics : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Acoustics : basic physics, theory, and methods / / Paul Filippi ... [et al.]
Edizione [1st ed.]
Pubbl/distr/stampa San Diego, : Academic Press, c1999
Descrizione fisica 1 online resource (335 p.)
Disciplina 534
Altri autori (Persone) FilippiP (Paul)
Soggetto topico Sound
Sound - Transmission
ISBN 1-281-03664-1
9786611036645
0-08-049855-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Acoustics: Basic Physics, Theory and Methods; Copyright Page; Contents; Foreword; Preface; Chapter 1. Physical Basis of Acoustics; Introduction; 1.1. Review of mechanics of continua; 1.2. Elementary acoustics; 1.3. Elementary acoustics of solids: Elementary elastic waves; 1.4. Conclusion; Bibliography; Chapter 2. Acoustics of Enclosures; Introduction; 2.1. General statement of the problem; 2.2. Sound field inside a parallelepipedic enclosure: free oscillations and eigenmodes; 2.3. Transient phenomena - reverberation time
2.4. Acoustic field inside a circular enclosure: introduction to the method of separation of variables2.5. Enclosures bounded by plane surfaces: introduction to the method of images; 2.6. General case: introduction to the Green's representation of acoustic fields; Bibliography; Chapter 3. Diffraction of Acoustic Waves and Boundary Integral Equations; Introduction; 3.1. Radiation of simple sources in free space; 3.2. Green's representation of the solution of linear acoustics boundary value problems; 3.3. Representation of a diffracted field by a layer potential
3.4. Boundary integral equations3.5. Two-dimensional Neumann problem for a circular boundary; Bibliography; Chapter 4. Outdoor Sound Propagation; Introduction; 4.1. Ground effect in a homogeneous atmosphere; 4.2. Diffraction by an obstacle in homogeneous atmosphere; 4.3. Sound propagation in an inhomogeneous medium; Bibliography; Chapter 5. Analytic Expansions and Approximation Methods; Introduction; 5.1. Asymptotic expansions obtained from integral expressions; 5.2. Kirchhoff approximation; 5.3. Neumann series; 5.4. W.K.B. method. Born and Rytov approximations
5.5. Image method, ray method, geometrical theory of diffraction5.6. Parabolic approximation; 5.7. Wiener-Hopf method; Bibliography; Chapter 6. Boundary Integral Equation Methods - Numerical Techniques; Introduction; 6.1. Techniques of solution of integral equations; 6.2. Eigenvalue problems; 6.3. Singularities; Bibliography; Chapter 7. Introduction to Guided Waves; Introduction; 7.1. Definitions and general remarks; 7.2. The problem of the waveguide; 7.3. Radiation of sources in ducts with ' sharp ' interfaces; 7.4. Shallow water guide; 7.5. Duct with absorbing walls
7.6. Ducts with varying cross section7.7. Conclusion; Bibliography; Chapter 8. Transmission and Radiation of Sound by Thin Plates; Introduction; 8.1. A simple one-dimensional example; 8.2. Equation governing the normal displacement of a thin elastic plate; 8.3. Infinite fluid-loaded thin plate; 8.4. Finite-dimension baffled plate: expansions of the solution into a series of eigenmodes and resonance modes; 8.5. Finite-dimension baffled plate: boundary integrals representation of the solution and boundary integral equations; 8.6. Conclusion; Bibliography; Chapter 9. Problems
Mathematical Appendix: Notations and Definitions
Record Nr. UNINA-9911139752903321
San Diego, : Academic Press, c1999
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui