What are the UK power system benefits from deployments of wave and tidal stream generation? |
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Modeling and optimal operation of hybrid wave energy and PV system feeding supercharging stations based on golden jackal optimal control strategy |
https://doi.org/10.1016/j.energy.2022.125932 |
Elsevier |
263 |
An Economic Approach to Size of a Renewable Energy Mix in Small Islands |
10.3390/en15062005 |
MDPI |
15 |
Research on Size Optimization of Wave Energy Converters Based on a Floating Wind-Wave Combined Power Generation Platform |
10.3390/en15228681 |
MDPI |
15 |
Numerical Study on a Cylinder Vibrator in the Hydrodynamics of a Wind–Wave Combined Power Generation System under Different Mass Ratios |
10.3390/en15249265 |
MDPI |
15 |
Thorne Island – Micro Tidal Lagoon Initial Assessment |
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A review of geographic information system (GIS) and techno economic (TE) software tools for renewable energy and methodology to develop a coupled GIS-TE software tool for marine renewable energy (MRE) |
10.1177/14750902221150050 |
Institution of Mechanical Engineers |
237 |
Optimal Control of Nonlinear Wave Energy Converters In Heave for Maximum Power Extraction for Maximum Power Extraction |
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Analyzing wave energy potential near Essaouira coast in Morocco |
10.1007/s40722-022-00274-7 |
Springer |
9 |
A Numerical Study on Hydrodynamic Energy Conversions of OWC-WEC with the Linear Decomposition Method under Irregular Waves |
10.3390/en14061522 |
MDPI |
14 |
The Possibility of a High-Efficiency Wave Power Generation System Using Dielectric Elastomers |
10.3390/en14123414 |
MDPI |
14 |
Design and CFD Analysis of the Energy Efficiency of a Point Wave Energy Converter Using Passive Morphing Blades |
10.3390/en16010204 |
MDPI |
16 |
The Prospect of Combining a Point Absorber Wave Energy Converter with a Floating Offshore Wind Turbine |
10.3390/en14217385 |
MDPI |
14 |
Multi-Mode Wave Energy Converter Design Optimisation Using an Improved Moth Flame Optimisation Algorithm |
10.3390/en14133737 |
MDPI |
14 |
Evaluation of potential tidal impoundment energy systems in Ria de Aveiro, Portugal |
10.1016/j.egyr.2020.11.115 |
Elsevier |
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Effect of cavitation evolution on power characteristics of tidal current turbine |
/10.1063/5.0131906 |
AIP Publishing |
35 |
Experimental Comparison between Hydrokinetic Turbines: Darrieus vs. Gorlov |
10.3390/environsciproc2022021026 |
MDPI |
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Optimization of Hydrokinetic Swept Blades |
10.3390/su142113968 |
MDPI |
14 |
Development and validation of an AI-Driven model for the La Rance tidal barrage: A generalisable case study |
10.1016/j.apenergy.2022.120506 |
Elsevier |
332 |
Computational Design Analysis of a Hydrokinetic Horizontal Parallel Stream Direct Drive Counter-Rotating Darrieus Turbine System: A Phase One Design Analysis Study |
10.3390/en15238942 |
MDPI |
15 |
Finite Element Analysis of Different Infill Patterns for 3D Printed Tidal Turbine Blade |
10.3390/su15010713 |
MDPI |
15 |
Status of Micro-Hydrokinetic River Technology Turbines Application for Rural Electrification in Africa |
10.3390/en15239004 |
MDPI |
15 |
Deep Learning-Based Prediction of Unsteady Reynolds-Averaged Navier-Stokes Solutions for Vertical-Axis Turbines |
10.3390/en16031130 |
MDPI |
16 |
Power fluctuation and wake characteristics of tidal stream turbine subjected to wave and current interaction |
10.1016/j.energy.2022.126185 |
Elsevier |
264 |
Model-scale experiments of passive pitch control for tidal turbines |
10.1016/j.renene.2023.01.051 |
Elsevier |
205 |
Phase-resolved wave prediction in highly spread seas using optimised arrays of buoys |
10.1016/j.apor.2022.103435 |
Elsevier |
130 |
A holistic methodology for hydrokinetic energy site selection |
10.1016/j.apenergy.2022.119155 |
Elsevier |
317 |
An automatic parallel scheme to design an augmented hydrokinetic river turbine using a simulation-based optimization approach |
10.1016/j.oceaneng.2022.113374 |
Elsevier |
268 |
Performance parameters of lift-based vertical axis hydrokinetic turbines - A review |
10.1016/j.oceaneng.2022.113089 |
Elsevier |
266 |
Numerical investigation on the performance of an innovative Airfoil-Bladed Savonius Hydrokinetic Turbine (ABSHKT) with deflector |
10.1016/j.ijft.2023.100279 |
Elsevier |
17 |
Co-enhancements of several design parameters of an archimedes spiral turbine for hydrokinetic energy conversion |
10.1016/j.energy.2023.126715 |
Elsevier |
268 |
Evaluating energy loss with the entropy production theory: A case study of a micro horizontal axis river ducted turbine |
10.1016/j.enconman.2022.116553 |
Elsevier |
276 |
Industrial scale thin-film composite membrane modules for salinity-gradient energy harvesting through pressure retarded osmosis |
10.1016/j.desal.2022.116217 |
Elsevier |
548 |
Impacts of flushing time and intrusion length on electricity production from salinity gradient energy (SGE) in the estuaries |
10.1080/15715124.2020.1750422 |
Taylor & Francis |
20 |
Frequency-multiplied cylindrical triboelectric nanogenerator for harvesting low frequency wave energy to power ocean observation system |
10.1016/j.nanoen.2022.107365 |
Elsevier |
99 |
Mediterranean coastal wave-climate long-term trend in climate change scenarios and effects on the optimal sizing of OWC wave energy converters |
10.1016/j.coastaleng.2022.104247 |
Elsevier |
179 |
Experimental investigation on the wave-oscillating buoy interaction and wave run-up on the buoy |
https://doi.org/10.1016/j.oceaneng.2023.113631 |
Elsevier |
270 |
Representative linearised models for a wave energy converter using various levels of force excitation |
10.1016/j.oceaneng.2023.113635 |
Elsevier |
270 |
A systematic approach for designing a highly efficient linear electrical generator for harvesting oceanic wave energy |
10.1016/j.renene.2023.01.020 |
Elsevier |
204 |
Research Progress and Prospect of Wave Attenuation Performance and Integration of Wave-Energy Converter of Floating Breakwater |
10.1061/JOEEDU.EEENG-7118 |
American Society of Civil Engineers |
149 |
Contribution to the study of electromagnetic gears for renewable energy applications |
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Performance variations of wave energy converters due to global long-term wave period change (1900–2010) |
10.1016/j.energy.2023.126632 |
Elsevier |
268 |
Wave energy conversion energizing offshore aquaculture: Prospects along the Portuguese coastline |
10.1016/j.renene.2023.01.009 |
Elsevier |
204 |
A Review of Power Co-Generation Technologies from Hybrid Offshore Wind and Wave Energy |
10.3390/en16010550 |
MDPI |
16 |
IEC TS 62600-202:2022- Part 202: Early stage development of tidal energy converters - Best practices and recommended procedures for the testing of pre-prototype scale devices |
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Objective Functions and Performance Optimization of Ocean Thermal Energy Conversion (OTEC) Cycle with CO2-Based Binary Zeotropic Mixture Power Cycle |
10.3390/jmse11010140 |
MDPI |
11 |
Study on Critical Factors Affecting Tidal Current Energy Exploitation in the Guishan Channel Area of Zhoushan |
10.3390/su142416820 |
MDPI |
14 |
Estimating Future Costs of Emerging Wave Energy Technologies |
10.3390/su15010215 |
MDPI |
15 |
Performance investigations of hybrid hydrokinetic turbine rotor with different system and operating parameters |
10.1016/j.energy.2022.126541 |
Elsevier |
267 |
Ocean Energy Market Investigation: A project of the Australian Ocean Energy Group |
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