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Ocean Wave and Tidal Power For A Renewable Energy Future - Fifty Books and Papers

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Waves are generated by wind passing over the surface of the sea. As long as the waves propagate slower than the wind speed just above the waves, there is an energy transfer from the wind to the waves. Both air pressure differences between the upwind and the lee side of a wave crest, as well as friction on the water surface by the wind, making the water to go into the shear stress causes the growth of the waves

Wave height is determined by wind speed, the duration of time the wind has been blowing, fetch (the distance over which the wind excites the waves) and by the depth and topography of the seafloor (which can focus or disperse the energy of the waves). A given wind speed has a matching practical limit over which time or distance will not produce larger waves. When this limit has been reached the sea is said to be "fully developed."

In general, larger waves are more powerful but wave power is also determined by wave speed, wavelength, and water density.

Oscillatory motion is highest at the surface and diminishes exponentially with depth. However, for standing waves (clapotis) near a reflecting coast, wave energy is also present as pressure oscillations at great depth, producing microseisms.[4] These pressure fluctuations at greater depth are too small to be interesting from the point of view of wave power.

The waves propagate on the ocean surface, and the wave energy is also transported horizontally with the group velocity. The mean transport rate of the wave energy through a vertical plane of unit width, parallel to a wave crest, is called the wave energy flux (or wave power, which must not be confused with the actual power generated by a wave power device).

thanks to wiki for above

 

Fifty Books and Papers About Tidal/Wave Energy Power

 

Ocean Wave Energy Conversion

Ocean Waves and Oscillating Systems: Linear Interactions Including Wave-Energy Extraction
Ocean Wave Energy: Current Status and Future PrespectivesOcean Wave Energy: Current Status and Future Prespectives
Ocean Wave Energy: Current Status and Future Prespectives
Hydrodynamics of Ocean Wave Energy Utilization: IUTAM Symposium Lisbon/Portugal 1985 (IUTAM Symposia)
Ocean, Tidal, and Wave Energy: Power from the Sea (Energy Revolution)
Elements of Tidal-Electric Engineering (IEEE Press Series on Power Engineering) 
The Analysis of Tidal Stream Power 
Tidal Power (IEEE Energy Series) (Institution of Electrical Engineers) (Institution of Electrical Engineers//Ieee Energy Series) Tidal Power: Proceedings of an International Conference on the Utilization of Tidal Power held May 24-29, 1970, at the Atlantic Industrial Research Institute, Nova Scotia Technical College, Halifax 
Tidal Power: Trends and Developments: Proceedings of the 4th Conference on Tidal Power 
Tidal Power from the Severn Estuary: v. 1 (Energy Paper) 
Energy from Wind, Sun and Tides (Power Up) 
Ocean Energy: Tide and Tidal Power
Alternative sources of energy including solar, tidal, wave, wind and geothermal power and heat pumps, 1969-1975: A list of references (GEC bibliography)
Tidal Power: Tides and Their Measurement; the Estimation of Potential Tidal Power; Comparisons Between Systems of Development; the Financial Aspect of ... Be Overcome; and the Lines for Development
 Bristol Channel: Gower Peninsula, Severn Barrage, Bridgwater Bay, Bristol Channel, Lavernock, Severn Tidal Power Feasibility Study 
SOUTH KOREA: Construction plans for proposed 252 Mw tidal power plant, KOREA WATER RESOURCES CORP. (KOWACO) [South Korea] - Order #: 022303.: An article ... & Plant Operations in the Developing World 
A history of the Passamaquoddy Tidal Power Project at Eastport, Maine 
Small scale tidal power plants (Report) 
Florida ship canal and Passamaquoddy tidal power projects: Hearing before the Committee on commerce, United... 
Bay of Fundy environmental and tidal power bibliography (Technical report - Fisheries and Marine Service) 
Potential of tidal and gulf stream power sources (Project - Governor's Energy Advisory Council) 
Computer plotting routines for the Bay of Fundy Tidal Power Project (Technical report - Marine Environmental Data Service, Canada) 
Strait: Water Channel, Land Mass, Reef, Archipelago, Shipping Route, Canal, Pearse Canal, Isthmus, Tidal Power 
Harnessing the waves.(ocean energy usage): An article from: E
Utilization of Ocean Waves: Wave to Energy Conversion
Wave new world: promoting ocean wave energy development through federal-state coordination and streamlined licensing.: An article from: Environmental Law
Wave Energy Conversion (Elsevier Ocean Engineering Series)
Ocean, Tidal, & Wave Energy: Power from the Sea -- 2008 publication 
Energy Harvesting: Solar, Wind, and Ocean Energy Conversion Systems (Energy, Power Electronics, and Machines) 
Promote the Sustainability in Integrated Coastal Development: Can Renewable Tidal Power Improve the Sustainable Shrimp Farming in Coastal Bangladesh? 
An inquiry into the feasibility of using ocean wave energy to power an oceanographic data collection buoy 
Banking on tidal power: Cornish firm develops 200MW hydroelectric generator.(NEWS): An article from: Engineer: The Professional Bulletin for Army Engineers 
Ocean wave energy in the South Pacific: The resource and its utilisation 
Wave Energy (Kodansha Scientific Books) 
Wave energy buoy plunges to ocean floor.(City/Region)(The 35-ton prototype will be removed, but not until spring): An article from: The Register-Guard (Eugene, OR) 
Ocean Wave Energy Conversion 
Harvesting ocean wave energy with the Lockheed Dam-Atoll 
Plotting of ocean wave energy spectral data (NOAA Western Region computer programs and problems ; NWS WRCP -) 
Energy Research Developments: Tidal Energy, Energy Efficiency, and Solar Energy 
Wave Farm: Wave Power, Wave Hub, Electricity, Generation, Renewable Energy, Hydroelectricity, Ocean Thermal Energy Conversion 
Wave Energy 
Assessment of wave power available at key United Kingdom sites: A description of work undertaken in the Department of Energy's Wave Energy Programme (I.O.S. report) 
An experimental study and engineering evaluation of the Salter cam wave energy converter (Report) 
Offshore Power: Building Renewable Energy Projects in U.S. Waters 
Tidal Power: Tidal power, Tide, Tidal acceleration, Damless hydro, Marine current power, Ocean energy, Wave power, World energy resources and consumption, ... Scotia Power, European Marine Energy Centre 
Wave Power: Wave Farms, Wave Power, Ocean Power in New Zealand, Lysekil Project, Pelamis Wave Energy Converter, Ceto Wave Power 
Energy from the Waves (Pergamon international library of science, technology, engineering, and social studies) 
 Utilization of the energy from ocean waves (IMR reference)
Proposals for conversion of the energy in ocean waves
The generation of small levels of electrical energy from ocean waves (University of Hawaii)
Harvesting the waves: researchers are closing in on how best to harness the power of the ocean.(POWER & energy): An article from: Mechanical Engineering-CIME
Civil Engineering Guidelines for Planning and Designing Hydroelectric Developments: Pumped Storage and Tidal Power 
Angoon tidal power and comparative analysis, Angoon, Alaska 
Tidal Power 
Power Stations in British Columbia: Hydroelectric Power Stations in British Columbia, Tidal Power Stations in British Columbia 
STUDIES IN TIDAL POWER 
Report on hydraulic design studies for tidal barriers and closures for proposed International Passamaquoddy Tidal Power Project 
The Annapolis Tidal Power Project: Civil design and construction

 

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