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Wave Energy Potential, Behavior and Extraction

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Wave energy has a higher potential than most of the available ocean energy resources; however, it fluctuates dramatically depending on geographical and temporal baselines. The complexity of wave energy is only exacerbated by that fact that the cycle of creation, transport, and disappearance of wave energy is influenced by a wide variety of factors. This Special Issue of Energies explores the latest developments in wave energy potential, behavior, and extraction. This Special Issue introduces 1) thorough reviews on the status of wave energy development, 2) novel technologies to extract wave energy including wave energy converter design, and 3) latest methodologies applied in analyzing wave energy potentials.

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Keywords

  • air chamber
  • arrays
  • capture width ratio
  • Challenges
  • cost
  • Design
  • efficiency improvement
  • eigen-function expansion
  • extreme conditions
  • extreme waves
  • frequency domain
  • Friction
  • Geographic information systems
  • Gulf of Mexico
  • hybrid system
  • hydrodynamic optimization
  • levelised cost of energy
  • linear damping
  • linear potential flow theory
  • Mediterranean Sea
  • meta-model
  • mooring
  • multidirectional
  • multiple scattering
  • offshore oil platforms
  • OpenFOAM
  • optimization
  • Oscillating Water Column
  • Parks
  • peak forces
  • point absorber
  • pontoon
  • potential flow theory
  • power capture ability
  • power fluctuations
  • power take-off
  • power take-off (PTO)
  • raft-type wave energy converter (WEC)
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • short-crested waves
  • station keeping
  • surrogate model
  • Survival
  • time domain
  • tsunami
  • wave diffraction
  • wave energy
  • wave energy converter
  • wave energy converter (WEC)
  • wave energy converters
  • wave energy converters (WEC)
  • Wave Power
  • WaveWatch III
  • Wind power

Links

DOI: 10.3390/books978-3-03928-397-2

Editions

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