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Wave Energy Resource Assessment for Exploitation—A Review
by
Chapalain, Georges
, Lavidas, George
, Guillou, Nicolas
in
Assessments
/ Atmospheric and Oceanic Physics
/ Climate change
/ coastal shelf seas
/ Computation
/ Computer Science
/ Computer simulation
/ Construction costs
/ Design
/ Earth Sciences
/ Energy industry
/ Energy resources
/ Energy sources
/ Environmental Engineering
/ Environmental impact
/ Environmental Sciences
/ Exploitation
/ Fluid mechanics
/ General Mathematics
/ inter-annual and inter-seasonal variability
/ Management
/ Mathematical models
/ Mathematical Physics
/ Mathematics
/ Mechanics
/ Methods
/ Modeling and Simulation
/ numerical spectral wave models
/ Ocean, Atmosphere
/ Oceanography
/ Physics
/ Renewable resources
/ Sciences of the Universe
/ Simulation
/ Statistics
/ Temporal variability
/ Temporal variations
/ Wave energy
/ wave energy converters
/ wave energy metrics
/ Wave power
/ wave–current interactions
2020
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Wave Energy Resource Assessment for Exploitation—A Review
by
Chapalain, Georges
, Lavidas, George
, Guillou, Nicolas
in
Assessments
/ Atmospheric and Oceanic Physics
/ Climate change
/ coastal shelf seas
/ Computation
/ Computer Science
/ Computer simulation
/ Construction costs
/ Design
/ Earth Sciences
/ Energy industry
/ Energy resources
/ Energy sources
/ Environmental Engineering
/ Environmental impact
/ Environmental Sciences
/ Exploitation
/ Fluid mechanics
/ General Mathematics
/ inter-annual and inter-seasonal variability
/ Management
/ Mathematical models
/ Mathematical Physics
/ Mathematics
/ Mechanics
/ Methods
/ Modeling and Simulation
/ numerical spectral wave models
/ Ocean, Atmosphere
/ Oceanography
/ Physics
/ Renewable resources
/ Sciences of the Universe
/ Simulation
/ Statistics
/ Temporal variability
/ Temporal variations
/ Wave energy
/ wave energy converters
/ wave energy metrics
/ Wave power
/ wave–current interactions
2020
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Do you wish to request the book?
Wave Energy Resource Assessment for Exploitation—A Review
by
Chapalain, Georges
, Lavidas, George
, Guillou, Nicolas
in
Assessments
/ Atmospheric and Oceanic Physics
/ Climate change
/ coastal shelf seas
/ Computation
/ Computer Science
/ Computer simulation
/ Construction costs
/ Design
/ Earth Sciences
/ Energy industry
/ Energy resources
/ Energy sources
/ Environmental Engineering
/ Environmental impact
/ Environmental Sciences
/ Exploitation
/ Fluid mechanics
/ General Mathematics
/ inter-annual and inter-seasonal variability
/ Management
/ Mathematical models
/ Mathematical Physics
/ Mathematics
/ Mechanics
/ Methods
/ Modeling and Simulation
/ numerical spectral wave models
/ Ocean, Atmosphere
/ Oceanography
/ Physics
/ Renewable resources
/ Sciences of the Universe
/ Simulation
/ Statistics
/ Temporal variability
/ Temporal variations
/ Wave energy
/ wave energy converters
/ wave energy metrics
/ Wave power
/ wave–current interactions
2020
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Journal Article
Wave Energy Resource Assessment for Exploitation—A Review
2020
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Overview
Over recent decades, the exploitation of wave energy resources has sparked a wide range of technologies dedicated to capturing the available power with maximum efficiency, reduced costs, and minimum environmental impacts. These different objectives are fundamental to guarantee the development of the marine wave energy sector, but require also refined assessments of available resource and expected generated power to optimize devices designs and locations. We reviewed here the most recent resource characterizations starting from (i) investigations based on available observations (in situ and satellite) and hindcast databases to (ii) refined numerical simulations specifically dedicated to wave power assessments. After an overall description of formulations and energy metrics adopted in resource characterization, we exhibited the benefits, limitations and potential of the different methods discussing results obtained in the most energetic locations around the world. Particular attention was dedicated to uncertainties in the assessment of the available and expected powers associated with wave–climate temporal variability, physical processes (such as wave–current interactions), model implementation and energy extraction. This up-to-date review provided original methods complementing the standard technical specifications liable to feed advanced wave energy resource assessment.
Publisher
MDPI AG,MDPI
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