DeRisk — Accurate Prediction of ULS Wave Loads. Outlook and First Results

Author:

Bredmose H.,Dixen M.,Ghadirian A.,Larsen T.J.,Schløer S.,Andersen S.J.,Wang S.,Bingham H.B.,Lindberg O.,Christensen E.D.,Vested M.H.,Carstensen S.,Engsig-Karup A.P.,Petersen O.S.,Hansen H.F.,Mariegaard J.S.,Taylor P.H.,Adcock T.A.A.,Obhrai C.,Gudmestad O.T.,Tarp-Johansen N.J.,Meyer C.P.,Krokstad J.R.,Suja-Thauvin L.,Hanson T.D.

Publisher

Elsevier BV

Reference27 articles.

1. The numerical solution of steady water wave problems;Fenton;Computers & Geosciences,1988

2. Bredmose, H., Mariegaard, J., Paulsen, B.T., Jensen, B., Schløer, S., Larsen, T.J., et al. The wave loads project. Tech. Rep. Report E-45, ISBN: 978-87 92896-77-3; DTU Wind Energy; 2013. Final report for the Danish ForskEL Wave Loads project.

3. Engsig-Karup, A., Bingham, H.B., Lindberg, O. An efficient flexible-order model for 3D nonlinear water waves. J Comp Phys 2009;228:2100-2118.

4. Schløer, S., Bredmose, H., Bingham, H.B., Larsen, T.J. Effects from fully nonlinear irregular wave forcing on the fatigue life of an offshore wind turbine and its monopile foundation. In: Proc. of the ASME 31th 2012 Int. Conf. on Ocean, Offshore and Arctic Engng. ASME; 2012,Rio de Janeiro, Brazil.

5. Schløer, S. Fatigue and extreme wave loads on bottom fixed wind turbines. Effects from fully nonlinear wave forcing on the structural dynamics. Ph.D. thesis; DTU Wind Energy; 2013. DTU Wind Energy PhD-0017, ISBN: 978-87-92896-47-6.

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