Fast time-domain model for the preliminary design of a wave power farm
Author:
Funder
Vetenskapsrådet
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference49 articles.
1. Hydrodynamic modelling of marine renewable energy devices: A state of the art review;Day;Ocean Eng.,2015
2. Wave energy from the North Sea: Experiences from the Lysekil research site;Leijon;Surv. Geophys.,2008
3. A review of the technologies for wave energy extraction;Rusu;Clean Energy,2018
4. Control-informed optimal array layout for wave farms;Garcia-Rosa;IEEE Trans. Sustain. Energy,2015
5. Hydrodynamic interactions among wave energy converter array and a hierarchical genetic algorithm for layout optimization;Zeng;Ocean Eng.,2022
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