Marine renewable energy resource characterization and physical effects /

This complete reference to marine renewable energy covers aspects of resource characterization and physical effects of harvesting the ocean's vast and powerful resources--from wave and tidal stream to ocean current energy. Experts in each of these areas contribute their insights to provide a co...

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Other Authors: Yang, Zhaoqing,, Copping, Andrea Elizabeth,, SpringerLink (Online service)
Format: eBook
Language: English
Published: Cham, Switzerland : Springer, 2017.
Physical Description: 1 online resource (xiv, 387 pages) : illustrations (some color)
Subjects:
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245 0 0 |a Marine renewable energy :  |b resource characterization and physical effects /  |c Zhaoqing Yang, Andrea Copping, editors. 
264 1 |a Cham, Switzerland :  |b Springer,  |c 2017. 
300 |a 1 online resource (xiv, 387 pages) :  |b illustrations (some color) 
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588 0 |a Online resource; title from PDF title page (SpringerLink, viewed April 27, 2017). 
505 0 |a Preface; Facing the Challenges of Resource Characterization and Physical System Effects of Marine Renewable Energy Development; Contents; About the Editors; 1 Wave Energy Assessments: Quantifying the Resource and Understanding the Uncertainty; Introduction; Wave Data Sources; Wave Measurements; Numerical Wave Models; WAM; WWIII; SWAN; TOMAWAC; MIKE-21 SW; Analyzing and Quantifying the Resource; Wave Spectra and Characteristic Parameterizations; Baseline Resource Assessment; Higher Fidelity Resource Assessments; Extreme Wave Analysis; Quantifying Environmental Factors. 
505 8 |a Impact of Resource Assessment Methodology on WEC Power Production EstimatesSite Identification for WEC Deployments; Conclusions; References; 2 Wave Energy Resources Along the European Atlantic Coast; Introduction; Spectral Wave Modelling; Overview of Models; WAM; WaveWatch III; SWAN; Model Set-up and ValidationModel Set-up and Validation; Scotland; Ireland; France; Galicia; Portugal; Wave Resource Assessment; Spatial Distribution; Seasonal and Interannual Variability; Summary and Discussion; Acknowledgements; References. 
505 8 |a 3 Analyses of Wave Scattering and Absorption Produced by WEC Arrays: Physical/Numerical Experiments and Model AssessmentIntroduction; WEC Array Laboratory Experiments; Incident Wave Conditions; Model WECs and WEC Arrays; Wave Instrumentation; Determination of the Relative Capture Width; Numerical Modeling; Phase-Resolved Linear Wave Theory-WAMIT; Phase-Averaged Linear Wave Theory-SWAN; Results; WAMIT-Data Comparisons; SWAN Data Comparisons; Discussion; Conclusions; Acknowledgements; References; 4 Hydrokinetic Tidal Energy Resource Assessments Using Numerical Models; Introduction. 
505 8 |a Individual Turbine AssessmentsRegional Feasibility Assessments; Project Assessments; Case Study; Summary; References; 5 Tidal Energy Resource Measurements; Introduction; The Tidal Energy Resource; Measurements of Deterministic Tidal Resource Characteristics; Measurements of Stochastic Tidal Resource Characteristics; Annual Energy Production; Large-Scale Resource Assessment and the Merging of Measurements with Models; Using Measurements to Validate Model-Based Resource Assessments; Conclusions; References; Wave-Tide Interactions in Ocean Renewable Energy; Introduction. 
505 8 |a Introduction to Wave-Tide InteractionWave Effects in Tidal Energy Projects; Wave Climate Effects to Resource Assessment; Wave Considerations in the Design of Tidal Turbines; Simplified Methods; Tidal Effects in Wave Energy Projects; Wave Energy Assessment in the Presence of Tides; Tidal Effects on Wave Energy Converters; Dynamically Coupled Wave-Tide Modeling Systems; Conclusions; References; 7 Use of Global Satellite Altimeter and Drifter Data for Ocean Current Resource Characterization; Introduction; Data and Method; Strong Ocean Currents and the Seasonal Variation of Current Speeds. 
520 |a This complete reference to marine renewable energy covers aspects of resource characterization and physical effects of harvesting the ocean's vast and powerful resources--from wave and tidal stream to ocean current energy. Experts in each of these areas contribute their insights to provide a cohesive overview of the marine renewable energy spectrum based on theoretical, numerical modeling, and field-measurement approaches. They provide clear explanations of the underlying physics and mechanics, and give close consideration to practical implementation aspects, including impacts on the physical system. Engineers, researchers, and students alike will find invaluable tools and studies that will aid them in realizing significant sustainable energy production from near-shore and ocean environments. 
504 |a Includes bibliographical references at the end of each chapters and index. 
650 0 |a Renewable energy sources. 
650 0 |a Ocean energy resources. 
650 6 |a Énergies renouvelables. 
650 6 |a Énergie des mers. 
650 7 |a Alternative & renewable energy sources & technology.  |2 bicssc. 
650 7 |a Offshore engineering.  |2 bicssc. 
650 7 |a Oceanography (seas)  |2 bicssc. 
650 7 |a TECHNOLOGY & ENGINEERING  |x Mechanical.  |2 bisacsh. 
650 7 |a Ocean energy resources.  |2 fast. 
650 7 |a Renewable energy sources.  |2 fast. 
700 1 |a Yang, Zhaoqing,  |e editor. 
700 1 |a Copping, Andrea Elizabeth,  |e editor. 
710 2 |a SpringerLink (Online service) 
776 0 8 |i Print version:  |t Marine renewable energy.  |d Cham, Switzerland : Springer, 2017  |z 331953534X  |z 9783319535340  |w (OCoLC)968655208. 
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