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Short Review and 3-D FEM Analysis of Basic Types of Foundation for Offshore Wind Turbines


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1. Dassault Systèmes. (2008): ABAQUS Theory Manual, Version 6.8, Hibbit, Karlsson & Sorensen Inc.Search in Google Scholar

2. Achmus M., Abdel-Rahman K. (2005): Finite element modelling of horizontally loaded monopile foundations for offshore wind energy converters in Germany. In: Proceedings of the First International Symposium on Frontiers in Offshore Geotechnics (ISFOG), 391–396, doi: 10.1201/NOE0415390637.ch3810.1201/NOE0415390637.ch38Search in Google Scholar

3. Achmus M., Kuo Y., Abdel-Rahman K. (2009): Behaviour of monopile foundations under cyclic lateral load. Computers and Geotechnics, Vol. 36(5), 725–735.10.1016/j.compgeo.2008.12.003Search in Google Scholar

4. Arany L., Bhattacharya S., Macdonald J., Hogan S. J. (2017): Design of monopiles for offshore wind turbines in 10 steps. Soil Dynamics and Earthquake Engineering, Vol. 92, 126–152.10.1016/j.soildyn.2016.09.024Search in Google Scholar

5. Bhattacharya, S., Nikitas, G., Arany, L., Nikitas, N. (2017): Soil-structure interactions for offshore wind turbines. Engineering and Technology Reference, Vol. 1(1), 1–16. http://digital-library.theiet.org10.1049/etr.2016.0019Search in Google Scholar

6. Byrne B. W., Houlsby G. T. (2003): Foundations for offshore wind turbines. Philosophical Transactions of the Royal Society of London Series A: Mathematical, Physical and Engineering Sciences, Vol. 361, 2909–2930.Search in Google Scholar

7. DNV (2010): DNV-OS-J101 Design of Offshore Wind Turbine Structures.Search in Google Scholar

8. EWEA (2013): Deep Water—the Next Step for Offshore Wind Energy. July 2013.Search in Google Scholar

9. EWEA (2009): Pure Power: Wind Energy Targets for 2020 and 2030. Technical Report of the European Wind Energy Association. URL http://www.ewea.org/.Search in Google Scholar

10. Gavin K. G., Igoe D. I., Doherty P. (2011): Piles for offshore wind turbines: A state of the art review. Proceedings of ICE Journal, Geotechnical Engineering, Vol. 164(4), 245–256.10.1680/geng.2011.164.4.245Search in Google Scholar

11. Haiderali A., Cilingir U., Madabhushi G. (2013): Lateral and axial capacity of monopiles for offshore wind turbines. Indian Geotechnical Journal, Vol. 43(3), 181–194, doi: 10.1007/s40098-013-0056-410.1007/s40098-013-0056-4Search in Google Scholar

12. Hansen N. M. (2012): Interaction Between Seabed Soil and Offshore Wind Turbine 624 Foundations, PhD thesis, Department of Mechanical Engineering, Technical University of Denmark.Search in Google Scholar

13. Hearn E. E., Edgers L. (2010): Finite element analysis of an offshore wind turbine monopile. In: GeoFlorida 2010: Advances in Analysis, Modeling & Design (GPS 199), 1857–1865.Search in Google Scholar

14. Houlsby G., Ibsen L., Byrne B. (2005). Suction caissons for wind turbines. In: G. A. Cassidy (Ed.), Frontiers in Offshore Geotechnics: ISFOG 2005, pp. 75–93, Taylor and Francis Group, London.Search in Google Scholar

15. Jung S., Kim S.-R., Patil A., Hung L. C. (2015): Effect of monopile foundation modeling on the structural response of a 5-MW off shore wind turbine tower. Ocean Engineering, Vol. 109, 479–488.10.1016/j.oceaneng.2015.09.033Search in Google Scholar

16. Kriegers Flak (2013): Technical Project Description for the Large-Scale Offshore Wind Farm (600 MW) at Kriegers Flak. Technical project description.Search in Google Scholar

17. LeBlanc C., Houlsby G. T., Byrne B. W. (2009): Response of stiff piles in sand to long-term cyclic lateral loading. Geotechnique, Vol. 60, 79–90.10.1680/geot.7.00196Search in Google Scholar

18. Lozano-Minguez E., Kolios Α. J., Brennan F. P. (2011): Multi-criteria assessment of offshore wind turbine support structures. Renewable Energy, Vol. 36(11), 2831–2837.10.1016/j.renene.2011.04.020Search in Google Scholar

19. Maa H., Yanga J., Chen L. (2017): Numerical analysis of the long-term performance of offshore wind turbines supported by monopiles, Ocean Engineering, Vol. 136, 94–105.Search in Google Scholar

20. Madariaga A., Martinez de Alegria I., Martin J. L., Eguia P., Ceballo S. (2012): Current facts about offshore wind farms. Renewable and Sustainable Energy Reviews, Vol. 16(5), 3105–3116.10.1016/j.rser.2012.02.022Search in Google Scholar

21. Myszkowska A. (2014): Fundamentowanie morskich farm wiatrowych. Doświadczenia z województwa zachodniopomorskiego. Inżynieria Morska i Geotechnika, Vol. 3, 238–244.Search in Google Scholar

22. Niklas K. (2017): Strength analysis of a large-size supporting structure for an offshore wind turbine. Polish Maritime Research, Special Issue S1 (93), Vol. 24, 156–165.10.1515/pomr-2017-0034Search in Google Scholar

23. Oh K. Y., Namb W., Ryuc M. S., Kimc J. Y., Epureanu B. I. (2018): A review of foundations of offshore wind energy convertors: Current status and future perspectives. Renewable and Sustainable Energy Reviews, Vol. 88, 16–36.10.1016/j.rser.2018.02.005Search in Google Scholar

24. Petersen T. U. (2014): Scour Around Offshore Wind Turbine Foundations, PhD thesis, Department of Mechanical Engineering, Technical University of Denmark.10.1201/b17703-78Search in Google Scholar

25. PN-77/B-02011. (1990): Obciążenia w Obliczeniach Statycznych. Obciążenie Wiatrem, PKN, Warszawa.Search in Google Scholar

26. Przewłócki J., Iwicki P. (2016): Some problems of supporting offshore wind turbines. In: L. Małyszko, R. Tarczewski (eds.), XXII Lightweight Structures in Civil Engineering, pp. 71–76, Wydawnictwo UWM, Olsztyn.Search in Google Scholar

27. Saleem Z. (2011): Alternatives and modifications of monopile foundation or its installation technique for noise mitigation. Report by Delft University of Technology for Stichting De Noordzee (the North Sea Foundation).Search in Google Scholar

28. Scharff, R., Siems, M. (2013): Monopile foundations for offshore wind turbines – solutions for greater water depths. Steel Construction, Vol. 6(1), 47–53.10.1002/stco.201300010Search in Google Scholar

29. Tempel J., Diepeveen N. F. B., Salzmann D. J, Vries W. E. (2010): Design of support structures for offshore wind turbines. WIT Transactions on State of the Art in Science and Engineering, Vol. 44, 559–591. www.witpress.com10.2495/978-1-84564-205-1/17Search in Google Scholar

30. Westgate, Z. J., DeJong J. T. (2005): Geotechnical Considerations for Offshore Wind Turbines, MTC-OWC.Search in Google Scholar

31. Widerski T. (2013): Pomiary i Prognozowanie Przemieszczeń Elektrowni Wiatrowych Metodami Geodezyjnymi, PhD thesis, Department of Geodesy, Faculty of Civil and Environmental Engineering, Gdańsk University of Technology.Search in Google Scholar

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