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Erosion --- Levees --- Wind waves --- Energy dissipation.
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Water waves. --- Breakers --- Surface waves (Water) --- Hydrodynamics --- Waves --- Wind waves
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Wind waves --- Nonlinear functional analysis --- Spectrum analysis --- Mathematical models.
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Energy dissipation --- Wind waves --- Spectra --- Fluides, Mécanique des --- Fluid mechanics --- Mécanique des fluides. --- Wind waves - Spectra --- Mécanique des fluides.
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Hydrodynamics --- Water waves --- Breakers --- Surface waves (Water) --- Waves --- Wind waves --- Fluid dynamics --- Hydrodynamics. --- Water waves.
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This book addresses ocean wave processes and turbulence as they affect oceanography, meteorology, marine and coastal engineering. It will enable applied mathematicians, seafarers, and all others affected by these phenomena to predict and control wave effects on shipping safety, weather forecasting, offshore structures, sediment pollution, and ice dynamics in polar regions. The focus is on analytical and computational methods for solving equations of motion and studying non-linear aspects of waves and turbulence. Results included show how sudden gusts and winds over waves can modify the mechani
Ocean-atmosphere interaction --- Water waves --- Breakers --- Surface waves (Water) --- Hydrodynamics --- Waves --- Wind waves
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Coastal engineering --- Travaux maritimes --- Waves --- Ondes --- Vagues de vent --- Wind waves
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This book contains over 220 papers presented at the 21st International Conference on Coastal Engineering. The book is divided into six parts: theoretical and observed wave characteristics; coastal processes and sediment transport; coastal structures and related problems; coastal, estuarine and environmental problems; case studies; and ship motions. The individual papers include such topics as the effects of wind, waves, storms and currents, erosion, sedimentation, and beach nourishment. Special emphasis is given to case studies of completed engineering projects. With the inclusion of both the theoretical and the practical, these papers provide the civil engineer with a broad range of information on coastal engineering.
Coastal engineering --- Ocean waves --- Coastal processes --- Case studies --- Wind waves --- Sediment transport --- Ship motion --- Estuaries --- Coastal engineering --- Ocean waves --- Coastal processes --- Case studies --- Wind waves --- Sediment transport --- Ship motion --- Estuaries
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This book gives a self-contained and up-to-date account of mathematical results in the linear theory of water waves. The study of waves has many applications, including the prediction of behavior of floating bodies (ships, submarines, tension-leg platforms etc.), the calculation of wave-making resistance in naval architecture, and the description of wave patterns over bottom topography in geophysical hydrodynamics. The first section deals with time-harmonic waves. Three linear boundary value problems serve as the approximate mathematical models for these types of water waves. The next section, in turn, uses a plethora of mathematical techniques in the investigation of these three problems. Among the techniques used in the book the reader will find integral equations based on Green's functions, various inequalities between the kinetic and potential energy, and integral identities which are indispensable for proving the uniqueness theorems. For constructing examples of non-uniqueness usually referred to as 'trapped modes' the so-called inverse procedure is applied. Linear Water Waves will serve as an ideal reference for those working in fluid mechanics, applied mathematics, and engineering.
Wave-motion, Theory of. --- Water waves --- Breakers --- Surface waves (Water) --- Hydrodynamics --- Waves --- Wind waves --- Undulatory theory --- Mechanics --- Mathematics.
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