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Fluid Waves/Волны в жидкой среде (Гидродинамика)

Артикул: 00-01040150
в желания В наличии
Автор: Richard Manasseh
Издательство: CRC Press (все книги издательства)
ISBN: 978-0-367-27164-0
Год: 2021
Переплет: Твердая обложка
Страниц: 312
Вес: 933 г
3000 P
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Издание на английском языке
An immense variety of phenomena involving mechanical waves occur in fluids. Fluid waves animate the ocean, provide us with music and affect the climate, while many vital new technologies for medicine, industry and infrastructure all involve fluid waves. Calculations are needed to pursue these applications, and it is hoped this book may be a convenient entry-point both for the calculations and for an appreciation of the applications.

Contents
Nomenclature
Preface
I Theory and classical applications
1 Fundamentals
1.1 Summary of key points
1.2 Basic fluid dynamics
1.3 Flow descriptions
1.4 Euler and Bernoulli equations
1.5 Wave tools
1.6 Problems
2 Water-surface waves
2.1 Summary of key points
2.2 An example
2.3 Linear water-wave theory
2.4 Problems
3 Sound waves
3.1 Summary of key points
3.2 An example
3.3 Linear sound-wave theory
3.4 Building acoustics
3.4.1 Reverberation
3.5 Problems
4 Internal gravity waves
4.1 Summary of key points
4.2 An example
4.3 Linear internal gravity-wave theory
4.4 Problems
5 Waves in rotating fluids
5.1 Summary of key points
5.2 An example
5.3 Linear inertia-wave theory
5.4 Problems
6 Introduction to some nonlinear wave theories
6.1 Summary of key points
6.2 An example
6.3 Nonlinearity in fluid waves
6.4 Stokes drift
6.5 Solitary waves
6.6 Problems
7 Nonlinear wave interactions
7.1 Summary of key points
7.2 An example
7.3 Mean flows driven by waves
7.4 Nonlinearly coupled waves
7.5 Problems
II Further applications
8 Ocean wave energy conversion
8.1 Summary of key points
8.2 Introduction to wave-energy conversion
8.3 Issues with wave-energy conversion
8.4 Wave-energy converter technologies
8.5 Analysis of a generic WEC
9 Bubble acoustics
9.1 Summary of key points
9.2 Volumetric oscillations of bubbles
9.3 Rayleigh-Plesset equation
9.4 Linear bubble acoustics
9.5 Applications of linear bubble acoustics
9.6 Nonlinear bubble acoustics and applications
10 Surface-wave breaking in weather and climate
10.1 Summary of key points
10.2 Wave breaking and air-sea exchange
10.3 Global climate consequences of ocean-wave breaking
11 Rotating fluid waves in space and planetary systems
11.1 Summary of key points
11.2 Rotating fluid waves in stellar and planetary physics
11.3 Engineering of rotating spacecraft
12 Nonlinear environmental waves
12.1 Summary of key points
12.2 Rogue waves
12.3 The tsunami: an ocean-surface soliton
12.4 Internal solitons
13 Streaming in medicine, industry and geophysics
13.1 Summary of key points
13.2 Acoustic streaming in medicine
13.3 Acoustic micro streaming
13.4 Streaming in rotating fluids and planetary physics
Bibliography
Index

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