The Knowledge Base provides access to documents and information about the environmental effects of marine renewable energy, supporting the OES-Environmental initiative. Relevant documents from around the world are compiled into a user-friendly table that displays all content available in Tethys. Results can be narrowed using the keyword filters on the right, or with search terms entered in the text box, including targeted searches (e.g., org:DOE, author:copping). Content may also be sorted alphabetically by clicking on column headers. Some entries will appear on the next page.
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Title | Author | Date | Content Type | Technology | Stressor | Receptor |
---|---|---|---|---|---|---|
Viability of renewable technologies from marine derived energy as global sources of electricity | Dubois, S.; Klein, K.; Villemure, M. | Journal Article | Marine Energy, OTEC, Wave | Human Dimensions, Environmental Impact Assessment, Marine Spatial Planning, Social & Economic Data | ||
Comparing two tourism-dependent, coastal communities and their opinions of local marine renewable energy projects | DeSanti, B. | Thesis | Marine Energy | Human Dimensions, Recreation & Tourism, Social & Economic Data | ||
Concerns in Marine Renewable Energy Projects | Previsic, M.; Kramer, S.; Nelson, P.; et al. | Report | Marine Energy, Tidal, Wave | Human Dimensions | ||
Phase-resolving wave modeling for the wave characterization of coastal and nearshore Marine Renewable Energy sites | Varing, A.; Filipot, J-F.; Roeber, V.; et al. | Conference Paper | Marine Energy, Wave | Ecosystem Processes, Human Dimensions | ||
Socio-technical-ecological evaluations of the potential to implement renewable energy sources in coastal areas of tropical developing countries – an East African case study | Molander, S.; Gullström, M.; Jagers, S.; et al. | Report | Marine Energy | Physical Environment, Human Dimensions, Social & Economic Data | ||
Seabed Scour Considerations for Marine Renewable Energy Facilities | Stevens, R.; Smith, K.; Soosainathan, L.; et al. | Conference Paper | Marine Energy | Habitat Change | Physical Environment | |
Projection of future wave climate for marine renewable energy | Mori, N.; Erikson, L.; Hemer, M.; et al. | Conference Paper | Marine Energy, Wind Energy | Human Dimensions | ||
The Interaction of Pelagic, Migratory and Protected Fishes with Marine Renewable Energy Projects: Recent Studies and Knowledge Gaps | Nelson, P. | Presentation | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Avoidance, EMF, Habitat Change | Fish, Pelagic Fish | |
Building a roadmap for the implementation of marine renewable energy in Colombia | Osorio, A.; Agudelo, P.; Correa, J.; et al. | Conference Paper | Marine Energy | Human Dimensions | ||
Singapore Strait Hydrodynamics: From Ancient Myths to Renewable Energy | Behera, M.; Haihua, X.; Tkalich, P. | Report | Marine Energy, Tidal | Ecosystem Processes, Physical Environment, Human Dimensions | ||
Variability in the Florida Current: Implications for Power Generation | Hanson, H.; Smentek-Duerr, A.; VanZwieten Jr., J. | Report | Marine Energy, Ocean Current | Ecosystem Processes, Physical Environment, Human Dimensions | ||
Wave Energy Technology Assessment | Hagerman, G.; Heller, T. | Book Chapter | Marine Energy, Wave | Human Dimensions | ||
Wave Energy Distribution Across the Agulhas Bank, A Source of Renewable Energy for a Seawater Pumped Storage Scheme | Francisco, F. | Thesis | Marine Energy, Wave | Human Dimensions | ||
Tropical Island Applications for Ocean Thermal Energy Conversion (OTEC) | Ford, J.; Toms, A. | Conference Paper | Marine Energy, OTEC | Human Dimensions | ||
Climate drivers of directional wave power on the Mexican coast | Oderiz, I.; Silva, R.; Mortlock, T.; et al. | Journal Article | Marine Energy, Wave | Human Dimensions, Climate Change | ||
Ocean Thermal Energy Conversion (OTEC) Power Plant and it's By Products Yield for Small Islands in Indonesia Sea Water | Siahaya, Y.; Salam, L. | Conference Paper | Marine Energy, OTEC | Human Dimensions | ||
Offshore Ocean Thermal Energy Conversion in Layang-Layang Island, Sabah-Malaysia | Fahmie, M.; Koto, J.; Tasri, A.; et al. | Journal Article | Marine Energy, OTEC | Human Dimensions | ||
Potential of 100 kW of Ocean Thermal Energy Conversion in Karangkelong, Sulawesi Utara, Indonesia | Negara, R.; Koto, J. | Journal Article | Marine Energy, OTEC | Human Dimensions | ||
Introduction to Ocean Renewable Energy | Neill, S. | Journal Article | Marine Energy | Human Dimensions | ||
Deployment Effects of Marine Renewable Energy Technologies: Wave Energy Scenarios | Previsic, M. | Report | Marine Energy, Wave | Human Dimensions | ||
Potential of ocean thermal energy conversion in Indonesia | Koto, J. | Journal Article | Marine Energy, OTEC | Human Dimensions | ||
An Overview of Ocean Renewable Energy | Barry, C.; Kamen, P. | Report | Marine Energy, Wind Energy | Human Dimensions | ||
Study on Electrification of Remote and Isolated Tropical Islands Using OTEC | Hassan, M.; Habib, W.; Rupam, T. | Conference Paper | Marine Energy, OTEC | Physical Environment, Human Dimensions, Social & Economic Data | ||
Mobile Autonomous Platforms for Passive-Acoustic Monitoring of High-frequency | Klinck, H.; Fregosi, S.; Matsumoto, H.; et al. | Conference Paper | Marine Energy, Tidal, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Avoidance, Habitat Change | Marine Mammals, Cetaceans | |
Assessments of Available Riverine Hydrokinetic Energy: A Review | Kirby, K.; Ferguson, S.; Rennie, C.; et al. | Journal Article | Marine Energy, Riverine | Human Dimensions | ||
Biological Consequences of Marine Energy Development on Marine Animals | Hemery, L.; Copping, A.; Overhus, D. | Journal Article | Marine Energy, Tidal | Changes in Flow, Collision, EMF, Entanglement, Habitat Change, Noise | Seabirds, Pelagic Fish, Invertebrates, Cetaceans, Pinnipeds | |
Automatic Segregation of Pelagic Habitats | Plonus, R-M.; Vogl, S.; Floeter, J. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Habitat Change | Physical Environment, Human Dimensions | |
Techniques for distinguishing between impulsive and non-impulsive sound in the context of regulating sound exposure for marine mammals | Martin, S.; Lucke, K.; Barclay, D. | Journal Article | Marine Energy | Noise | Marine Mammals, Cetaceans | |
Examining the hearing abilities of fishes | Popper, A.; Hawkins, A.; Sand, O.; et al. | Journal Article | Marine Energy | Noise | Fish, Human Dimensions, Environmental Impact Assessment | |
Sound exposure level as a metric for analyzing and managing underwater soundscapes | Martin, S.; Morris, C.; Bröker, C.; et al. | Journal Article | Marine Energy | Noise | Human Dimensions, Environmental Impact Assessment, Recreation & Tourism | |
Annual movement patterns of American common eiders Somateria mollissima dresseri | Mallory, M.; Ronconi, R.; Allen, B.; et al. | Journal Article | Marine Energy, Wind Energy | Birds, Shorebirds, Waterfowl | ||
World Marine Mammal Conference Book of Abstracts | Gazo, M.; Chicote, C.; Pabst, A.; et al. | Conference Paper | Marine Mammals | |||
Characterization of Marine Mammal Biomechanics to Evaluate Tidal Turbine Collision Impact | Grear, M. | Thesis | Marine Energy, Tidal | Collision | Marine Mammals | |
Global trends in aquatic animal tracking with acoustic telemetry | Matley, J.; Klinard, N.; Martins, A.; et al. | Journal Article | Marine Energy | Human Dimensions | ||
Predicting coastal impacts by wave farms: A comparison of wave-averaged and wave-resolving models | David, D.; Rijnsdorp, D.; Hansen, J.; et al. | Journal Article | Marine Energy, Wave | Changes in Flow | Human Dimensions, Environmental Impact Assessment | |
Marine energy and the new blue economy | Geerlofs, S. | Book Chapter | Human Dimensions, Marine Spatial Planning, Social & Economic Data | |||
Accelerating ocean-based renewable energy educational opportunities to achieve a clean energy future | Constant, C.; Kotarbinski, M.; Stefek, J.; et al. | Journal Article | Marine Energy, Wind Energy | Human Dimensions, Social & Economic Data | ||
The Evolution and Future Prospects of China’s Wave Energy Policy from the Perspective of Renewable Energy: Facing Problems, Governance Optimization and Effectiveness Logic | Qi, M.; Dai, X.; Zhang, B.; et al. | Journal Article | Marine Energy, Wave | Human Dimensions, Legal & Policy | ||
Insights from the management of offshore energy resources: Toward an ecosystem-services based management approach for deep-ocean industries | Bravo, M.; Brandt, M.; van der Grient, J.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Avoidance, Changes in Flow, EMF, Habitat Change, Noise | Ecosystem Processes, Fish, Social & Economic Data | |
SafeWave Deliverable 2.5 Monitoring fish communities | Uriarte, A.; Boyra, G.; Ferarios, J.; et al. | Report | Marine Energy, Wave | Attraction | Fish | |
Understanding the Value of Strategic Evidence Surveys to Support the Tidal Steam Energy Sector in Wales | Wood, D.; Griffith, A.; Basic, T.; et al. | Report | Marine Energy, Tidal | Birds, Fish, Marine Mammals | ||
Marine Renewable Energy: Policy, People, and Prospects | Wickizer, B.; Brandt, D.; Robertson, B.; et al. | Book Chapter | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Human Dimensions, Legal & Policy | ||
Open Sea Lab | Ocean Power Technologies (OPT) | Project Site | Marine Energy, Wave | |||
Deployment and Maintenance of Wave Energy Converters at the Lysekil Research Site: A Comparative Study on the Use of Divers and Remotely-Operated Vehicles | Rémouit, F. ; Chatzigiannakou, M.; Bender, A.; et al. | Journal Article | Marine Energy, Wave | |||
Magallanes Renovables ATIR at EMEC | Magallanes Renovables; Magallanes Renovables | Project Site | Marine Energy, Tidal | |||
A new seabed mobility index for the Irish Sea: Modelling seabed shear stress and classifying sediment mobilisation to help predict erosion, deposition, and sediment distribution | Coughlan, M.; Guerrini, M.; Creane, S.; et al. | Journal Article | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment, Sediment Transport | |
The Irish Sea bed load parting zone: Is it a mid-sea hydrodynamic phenomenon or a geological theoretical concept? | Creane, S.; O'Shea, M.; Coughlan, M.; et al. | Journal Article | Marine Energy, Tidal, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment, Sediment Transport, Human Dimensions, Marine Spatial Planning | |
Development and Dynamics of Sediment Waves in a Complex Morphological and Tidal Dominant System: Southern Irish Sea | Creane, S.; Coughlan, M.; O’Shea, M.; et al. | Journal Article | Marine Energy, Tidal, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment, Sediment Transport | |
Internationalization as a strategy to overcome industry barriers—An assessment of the marine energy industry | Lovdal, N.; Neumann, F. | Journal Article | Marine Energy | |||
Accelerating the development of marine energy: Exploring the prospects, benefits and challenges | Jeffrey, H.; Jay, B.; Winksel, H. | Journal Article | Marine Energy | Human Dimensions, Environmental Justice, Legal & Policy |
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