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2 Wave Loads on <strong>Wind</strong>-Power Plants in Deep and Shallow Water 13<br />

Forskningscenter and Teknikgruppen AB. The use of unpublished material<br />

from IBW Pan in Gdansk is acknowledged.<br />

References<br />

1. Komen, G. J. et al. (1994): Dynamics and modelling of ocean waves, Cambridge<br />

University Press, Cambridge, pp. 532<br />

2. http://falowanie.icm.edu.pl/english/wavefrcst.html#elem2<br />

3. Paplínska, B. (1999): Wave analysis at Lubiatowo and in the Pommeranian<br />

Bay based on measurements from 1997/1998 – Comparison with modelled data<br />

(WAM4 model), Oceanologia, 42(2), 241–254<br />

4. Trumars, J. (2003): Simulation of Irregular Waves and Wave Induced Loads on<br />

<strong>Wind</strong> Power Plants in Shallow Water, Licentiate Thesis, Water Environment<br />

Transport, Chalmers University of Technology, Göteborg, 2003<br />

5. Holthuijsen, L. H., Booij, N., Ris, R. C., Haagsma, I. G., Kieftenburg, A. T.<br />

M. M. and Kriezi, E. E. (2000): User Manual, SWAN Cycle III version 40.11.<br />

Delft: Delft University of Technology<br />

6. Reda, A., and Paplínska, B. (2002): Application of the numerical wave model<br />

SWAN for analysis of waves in the surf zone, Oceanological Studies, XXXI(1–2),<br />

5–21<br />

7. Trumars, J., Tarp-Johansen, N. J. and Krogh, T. (2005): Fatigue loads on offshore<br />

wind turbines due to non-linear waves, Proceedings of 24 th OMAE2005,<br />

June 12–17, Halkidiki<br />

8. Eskilsson, C. and Sherwin, S. (2006): Spectral/hp discontinuous Galerkin methods<br />

for modelling 2D Boussinesq equations, Journal of Computational Physics,<br />

212(2), 566–589<br />

9. Ferziger, J. H. & Peric, M. (1997): Computational Methods for Fluid Dynamics,<br />

ISBN 3-540-59434-5, Springer, Berlin Heidelberg New York

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