Hybrid wave and offshore wind farms: A comparative case study of co-located layouts

International Journal of Marine Energy - Tập 15 - Trang 2-16 - 2016
S. Astariz1, C. Perez-Collazo2, J. Abanades2, G. Iglesias2
1EPS, Hydraulic Engineering, University of Santiago de Compostela, Spain
2School of Marine Science and Engineering, Plymouth University, Plymouth, UK

Tài liệu tham khảo

Astariz, 2016, Wave energy vs. other energy sources: a reassessment of the economics, Int. J. Green Energy, 10.1080/15435075.2014.963587 Pérez-Collazo, 2015, A review of combined wave and offshore wind energy, Renewable Sustainable Energy Rev., 42, 141, 10.1016/j.rser.2014.09.032 Pérez-Collazo, 2013 Astariz, 2015, Co-located wind-wave farm synergies (operation maintenance): a case study, Energy Convers. Manage., 91, 63, 10.1016/j.enconman.2014.11.060 van Bussel, 2001, Reliability, availability and maintenance aspects of large-scale offshore wind farms, a concepts stud Wave Hub. Available at: <http://www.wavehub.co.uk/about/location-of-wave-hub/>, 13/06/2015. Millar, 2007, Modelling analysis of the sensitivity of shoreline change to a wave farm, Ocean Eng., 34, 884, 10.1016/j.oceaneng.2005.12.014 Kenny, 2009 TUDelft, Wind farm optimization, Horns Rev: optimization of layout for wake losses in: T.U., Eindhoven, (Ed.), SET MSc Course Wind Energy, 2006. Iglesias, 2011, The WaveCat© – development of a new wave energy converter world Fernandez, 2012, The new wave energy converter WaveCat: concept and laboratory tests, Mar. Struct., 29, 58, 10.1016/j.marstruc.2012.10.002 Allan, 2008, Concurrent and legacy economic and environmental impacts from establishing a marine energy sector in Scotland, Energy Policy, 36, 2734, 10.1016/j.enpol.2008.02.020 DOTI GmbH, Alpha Ventus Fact Sheet. Available at: <http://www.alpha-ventus.de/uploads/media/av_Factsheet_en_May_2011.pdf>, 2011. Beels, 2012, A methodology for production and cost assessment of a farm of wave energy converters, Renewable Energy, 36, 3402, 10.1016/j.renene.2011.05.019 <http://www.4coffshore.com/windfarms/bard-offshore-1-germany-de23.html>, 13/06/2015. <http://www.4coffshore.com/windfarms/lincs-united-kingdom-uk13.htm>, 13/06/2015. Palha, 2010, The impact of wave energy farms in the shoreline wave climate: Portuguese pilot zone case study using Pelamis energy wave devices, Renewable Energy, 35, 62, 10.1016/j.renene.2009.05.025 Smith, 2012, Further analysis of change in nearshore wave climate due to an offshore wave farm: an enhanced case study for the Wave Hub site, Renewable Energy, 40, 51, 10.1016/j.renene.2011.09.003 Abanades, 2014, Wave farm impact on the beach profile: a case study, Coastal. Eng., 86, 36, 10.1016/j.coastaleng.2014.01.008 Ponce de Leon, 2011, Simulation of irregular waves in an offshore wind farm with a spectral wave model, Cont. Shelf Res., 31, 17, 10.1016/j.csr.2011.07.003 ETSU, Potential effects of offshore wind developments on coastal processes, ETSU W/35/00596/00/REP, in: P.b.A.a. METOC, (Ed.), <http://www.offshorewindenergy.org/reports/report_002.pdf>, 2002. Astariz, 2015, Towards the optimal design of a co-located wind-wave farm, Energy, 84, 15, 10.1016/j.energy.2015.01.114 Hayashi, 1966, Hydraulic research on the closely spaced pile breakwater, Coastal Eng., 50, 12 van Bussel, 2013, The DOWEC offshore reference windfarm: analysis of transportation for operation and maintenance, Wind Eng., 27, 11