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Original Articles

Parametric CAPEX, OPEX, and LCOE expressions for offshore wind farms based on global deployment parameters

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References

  • 4C Offshore. 2017. Global offshore wind farms database. http://www.4coffshore.com/windfarms/.
  • Barro, Robert J. (1997), Macroeconomics (5th ed.), Cambridge: The MIT Press, United States of America, ISBN 0-262-02436-5.
  • BEIS. 2016. Electricity generation costs. Accessed November, 2016. https://www.gov.uk/government/uploads/system/uploads/attachment_data/file/566567/BEIS_Electricity_Generation_Cost_Report.pdf.
  • BVGA. 2010. A guide to an offshore wind farm, BVG associates on behalf of the crown estate. www.thecrownestate.co.uk/guide_to_offshore_windfarm.pdf.
  • BVGA. 2015. DECC offshore wind programme – simple levelised cost of energy model. Revision 3–26/10/2015. http://www.demowind.eu/LCOE.xlsx.
  • Carroll, J., A. McDonald, and M. David. 2016. Failure rate, repair time and unscheduled O&M cost analysis of offshore wind turbines. Wind Energy 19 (6):1107–19. doi:10.1002/we.1887.
  • The Crown Estate. 2010. A guide to an offshore wind farm. London, UK.
  • Dicorato, M., G. Forte, M. Pisani, and M. Trovato. 2011. Guidelines for assessment of investment cost for offshore wind generation. Renewable Energy 36 (8):2043–51. doi:10.1016/j.renene.2011.01.003.
  • EWEA. 2015. Wind energy scenarios for 2030. Brussels, Belgium: The European Wind Energy Association.
  • Kaiser, M. J., and B. F. Snyder. 2012. Offshore wind energy cost modeling – installation and decommissioning. London, UK: Springer-Verlag.
  • Kaiser, M. J. 2009. The impact of weather on offshore energy losses. Energy Sources, Part B: Economics, Planning, and Policy 4 (1):59–67. doi:10.1080/15567240701421864.
  • Kolios, A., V. Mytilinou, E. Lozano-Minguez, and K. Salonitis. 2016. A comparative study of multiple-criteria decision-making methods under stochastic inputs. Energies 9 (7):566. doi:10.3390/en9070566.
  • Myhr, A., C. Bjerkseter, A. Ågotnes, and T. A. Nygaard. 2014. Levelised cost of energy for offshore floating wind turbines in a life cycle perspective. Renewable Energy 66:714–28. doi:10.1016/j.renene.2014.01.017.
  • Regueiro-Ferreira, R. M., and S. Villasante. 2016. Recent development of offshore marine power in Galicia. Energy Sources, Part B: Economics, Planning, and Policy 11 (8):760–65. doi:10.1080/15567249.2013.787471.
  • Sarker, B. R., and T. I. Faiz. 2017. Minimizing transportation and installation costs for turbines in offshore wind farms. Renewable Energy 101:667–79. doi:10.1016/j.renene.2016.09.014.
  • Shafiee, M., F. Brennan, and I. A. Espinosa. 2016. A parametric whole life cost model for offshore wind farms. The International Journal of Life Cycle Assessment 21 (7):961–75. doi:10.1007/s11367-016-1075-z.
  • van de Pieterman, R. P., H. Braam, T. S. Obdam, L. W. M. M. Rademakers, and T. J. J. van der Zee. 2011. Optimisation of maintenance strategies for offshore wind farms. The Netherlands: Energy Research Center of the Netherlands.
  • Wilkinson, M. et al., 2010. Methodology and Results of the Reliawind Reliability Field Study; European Wind Energy Conference, Warszaw, April 2010.