Book contents
- Frontmatter
- Contents
- Prefaces
- Chapter One Introduction
- Chapter Two Mathematical Description of Oscillations
- Chapter Three Interaction between Oscillations and Waves
- Chapter Four Gravity Waves on Water
- Chapter Five Wave–Body Interactions
- Chapter Six Oscillating-Body Wave-Energy Converters
- Chapter Seven Oscillating Water Columns and Other Types of Wave-Energy Converters
- Chapter Eight Wave-Energy Converter Arrays
- Bibliography
- Index
Chapter Five - Wave–Body Interactions
Published online by Cambridge University Press: 12 May 2020
- Frontmatter
- Contents
- Prefaces
- Chapter One Introduction
- Chapter Two Mathematical Description of Oscillations
- Chapter Three Interaction between Oscillations and Waves
- Chapter Four Gravity Waves on Water
- Chapter Five Wave–Body Interactions
- Chapter Six Oscillating-Body Wave-Energy Converters
- Chapter Seven Oscillating Water Columns and Other Types of Wave-Energy Converters
- Chapter Eight Wave-Energy Converter Arrays
- Bibliography
- Index
Summary
Chapter 5 is mainly devoted to the interaction between waves and immersed bodies. In general, an immersed body may oscillate in six different modes, three translating modes (surge, sway, heave) and three rotating modes (roll, pitch, yaw). An oscillating body radiates waves, and an incident wave may induce a corresponding excitation force for each one of the six modes. When a body oscillates, it radiates waves. Such radiated waves and excitation forces are related by so-called reciprocity relationships. Such relations are derived not only for a single oscillating body but even for a group (or 'array') of immersed bodies. Axisymmeric bodies and two-dimensional bodies are discussed in separate sections of the chapter. Although most of this chapter discusses wave-body dynamics in the frequency domain, a final section treats an immersed body in the time domain.
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- Ocean Waves and Oscillating SystemsLinear Interactions Including Wave-Energy Extraction, pp. 121 - 203Publisher: Cambridge University PressPrint publication year: 2020