Nonlinear Ocean Waves and the Inverse Scattering Transform

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2010
ISBN13: 9780125286299
Rubricering
Elsevier Science e druk, 2010 9780125286299
Onderdeel van serie International Geophysics
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

For more than 200 years, the Fourier Transform has been one of the most important mathematical tools for understanding the dynamics of linear wave trains. Nonlinear Ocean Waves and the Inverse Scattering Transform presents the development of the nonlinear Fourier analysis of measured space and time series, which can be found in a wide variety of physical settings including surface water waves, internal waves, and equatorial Rossby waves. This revolutionary development will allow hyperfast numerical modelling of nonlinear waves, greatly advancing our understanding of oceanic surface and internal waves. Nonlinear Fourier analysis is based upon a generalization of linear Fourier analysis referred to as the inverse scattering transform, the fundamental building block of which is a generalized Fourier series called the Riemann theta function. Elucidating the art and science of implementing these functions in the context of physical and time series analysis is the goal of this book.

Specificaties

ISBN13:9780125286299
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>1. Brief History of Nonlinear Water Waves, Fourier analysis and Integrability</p> <p>Part I: Theoretical and Physical Considerations</p> <p>2. Theories of Water Waves</p> <p>3. Introduction to Linear and Nonlinear Fourier analysis</p> <p>4. The Infinite-Line Inverse Scattering Transform</p> <p>5. The Periodic Inverse Scattering Transform</p> <p>6. Additional Theoretical Considerations</p> <p>7. Physical Perspective and Exotic Solutions</p> <p>8. Extending the Inverse Scattering Transform to Higher Order</p> <p>Part II: Numerical and Time Series Analysis Algorithms</p> <p>9. Numerical Methods for Infinite-Line Boundary Conditions</p> <p>10. Numerical Algorithms for the Analysis of Nonlinear Space and Time Series</p> <p>11. Procedures for the Analysis of Nonlinear Wave Data</p> <p>12. Nonlinear Power Spectral Analysis</p> <p>Part III: Time Series Analysis of Experimental Data</p> <p>13. Surface Waves in the Laboratory</p> <p>14. Surface Waves in the Adriatic Sea</p> <p>15. Surface Waves at Duck Pier</p> <p>16. Surface Waves in the North Sea</p> <p>17. Internal Waves in the Andaman Sea</p> <p>Part IV: Future Directions</p> <p>18. Engineering Applications of IST</p> <p>19. Chaotic Dynamics Nonlinear Wave Equations and Water Waves</p>

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        Nonlinear Ocean Waves and the Inverse Scattering Transform