Suitability of a pile group foundation for an offshore wind turbine

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

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  • National Cheng Kung University
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OriginalspracheEnglisch
Titel des SammelwerksProceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan
Seiten222-226
Seitenumfang5
PublikationsstatusVeröffentlicht - 2014
Veranstaltung24th International Ocean and Polar Engineering Conference, ISOPE 2014 Busan - Busan, Südkorea
Dauer: 15 Juni 201420 Juni 2014

Publikationsreihe

NameProceedings of the International Offshore and Polar Engineering Conference
ISSN (Print)1098-6189
ISSN (elektronisch)1555-1792

Abstract

Monopile, tripod and jacket structures are the most popular foundations adopted in offshore wind farms in Europe. Piles with diameters mostly larger than 2 m are usually installed for these foundations. More than 500 offshore wind turbines shall be installed in the Taiwan Strait in the next 20 years. However, due to limited pile driving capacity of the marine engineering industry in Taiwan, the pile group foundation with pile diameters of maximum D = 1.6 m is considered as foundation for offshore wind turbines and a research platform. This paper aims to investigate the behavior of multi-pile-soil system under monotonic lateral load. A three-dimensional finite element model with non-linear material behavior of the subsoil was established. The deformation responses of a pile group platform foundation calculated with FEM under monotonic lateral load are compared with the results calculated with a simplified approach based on the p-y-curves method. The bearing behavior of the pile group platform foundation cannot adequately considered by the simplified approach. To evaluate the suitability of group pile platform foundation, the deformation responses of a typical monopile are considered as reference values. The investigated pile group foundation is more flexible than the monopile, i.e the lateral deformations of the piles are much larger than the deformation of the monopile. However, due to the great stiffness of the platform plate the rotation of the platform is within the usual tolerance for offshore wind turbines and even smaller than the inclination of monopile.

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Suitability of a pile group foundation for an offshore wind turbine. / Kuo, Y. S.; Abdel-Rahman, K.; Wu, K. T. et al.
Proceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan. 2014. S. 222-226 (Proceedings of the International Offshore and Polar Engineering Conference).

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Kuo, YS, Abdel-Rahman, K, Wu, KT, Huang, TY & Achmus, M 2014, Suitability of a pile group foundation for an offshore wind turbine. in Proceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan. Proceedings of the International Offshore and Polar Engineering Conference, S. 222-226, 24th International Ocean and Polar Engineering Conference, ISOPE 2014 Busan, Busan, Südkorea, 15 Juni 2014. <http://publications.isope.org/proceedings/ISOPE/ISOPE%202014/index.htm>
Kuo, Y. S., Abdel-Rahman, K., Wu, K. T., Huang, T. Y., & Achmus, M. (2014). Suitability of a pile group foundation for an offshore wind turbine. In Proceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan (S. 222-226). (Proceedings of the International Offshore and Polar Engineering Conference). http://publications.isope.org/proceedings/ISOPE/ISOPE%202014/index.htm
Kuo YS, Abdel-Rahman K, Wu KT, Huang TY, Achmus M. Suitability of a pile group foundation for an offshore wind turbine. in Proceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan. 2014. S. 222-226. (Proceedings of the International Offshore and Polar Engineering Conference).
Kuo, Y. S. ; Abdel-Rahman, K. ; Wu, K. T. et al. / Suitability of a pile group foundation for an offshore wind turbine. Proceedings of the 24th International Ocean and Polar Engineering Conference, ISOPE Busan. 2014. S. 222-226 (Proceedings of the International Offshore and Polar Engineering Conference).
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abstract = "Monopile, tripod and jacket structures are the most popular foundations adopted in offshore wind farms in Europe. Piles with diameters mostly larger than 2 m are usually installed for these foundations. More than 500 offshore wind turbines shall be installed in the Taiwan Strait in the next 20 years. However, due to limited pile driving capacity of the marine engineering industry in Taiwan, the pile group foundation with pile diameters of maximum D = 1.6 m is considered as foundation for offshore wind turbines and a research platform. This paper aims to investigate the behavior of multi-pile-soil system under monotonic lateral load. A three-dimensional finite element model with non-linear material behavior of the subsoil was established. The deformation responses of a pile group platform foundation calculated with FEM under monotonic lateral load are compared with the results calculated with a simplified approach based on the p-y-curves method. The bearing behavior of the pile group platform foundation cannot adequately considered by the simplified approach. To evaluate the suitability of group pile platform foundation, the deformation responses of a typical monopile are considered as reference values. The investigated pile group foundation is more flexible than the monopile, i.e the lateral deformations of the piles are much larger than the deformation of the monopile. However, due to the great stiffness of the platform plate the rotation of the platform is within the usual tolerance for offshore wind turbines and even smaller than the inclination of monopile.",
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AU - Kuo, Y. S.

AU - Abdel-Rahman, K.

AU - Wu, K. T.

AU - Huang, T. Y.

AU - Achmus, M.

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KW - Monopile

KW - Monotonic loading

KW - Offshore

KW - P-y-curves method

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