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Fragoso Rodrigues, S.M. (author), Restrepo, C. (author), Katsouris, G. (author), Teixeira Pinto, R. (author), Soleimanzadeh, M. (author), Bosman, P. (author), Bauer, P. (author)
Current offshore wind farms (OWFs) design processes are based on a sequential approach which does not guarantee system optimality because it oversimplifies the problem by discarding important interdependencies between design aspects. This article presents a framework to integrate, automate and optimize the design of OWF layouts and the...
journal article 2016
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Fragoso Rodrigues, S.M. (author), Bauer, P. (author), Bosman, P.A.N. (author)
Currently, Offshore Wind Farms (OWFs) are designed to achieve high turbine density so as to reduce costs. However, due to wake interferences, densely packing turbines reduces energy production. Having insight into optimized trade-offs between energy production, capital investment and operational costs would be valuable to OWFs designers. To...
journal article 2016
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Fragoso Rodrigues, S.M. (author), Bauer, P. (author), Bosman, P.A.N. (author), Pierik, J. (author)
Offshore wind farms with high installed capacities and located further from the shore are starting to be built by northern European countries. Furthermore, it is expected that by 2020, several dozens of large offshore wind farms will be built in the Baltic, Irish and North seas. These wind farms will be constituted of a considerable number of...
conference paper 2014
document
Teixeira Pinto, R. (author), Fragoso Rodrigues, S. (author), Wiggelinkhuizen, E. (author), Scherrer, R. (author), Bauer, P. (author), Pierik, P. (author)
For achieving the European renewable electricity targets, a significant contribution is foreseen to come from offshore wind energy. Considering the large scale of the future planned offshore wind farms and the increasing distances to shore, grid integration through a transnational DC network is desirable for several reasons. This article...
journal article 2012
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