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247
57. Trulsen, K., Kliakhandler, I., Dysthe, K. B., & Velarde, M. G. (2000). On weakly nonlinear
modulation of waves on deep water. Physics of Fluids, 12, 2432–2437.
58. Trulsen, K., Zeng, H., & Gramstad, O. (2012). Laboratory evidence of freak waves provoked
by non-uniform bathymetry. Physics of Fluids, 24, 097,101.
59. Trulsen, K., Nieto Borge, J. C., Gramstad, O., Aouf, L., & Lefèvre, J. M. (2015). Crossing
sea state and rogue wave probability during the Prestige accident. Journal of Geophysical
Research: Oceans, 120, 7113–7136.
60. Viotti, C., & Dias, F. (2014). Extreme waves induced by strong depth transitions: Fully nonlinear results. Physics of Fluids, 26, 051,705.
61. Viste-Ollestad I, Andersen TL, Oma N, Zachariassen S (2016) Granskingsrapport etter hendelse med fatalt utfall på COSL Innovator 30. desember 2015. Tech. rep., Petroleumstilsynet
62. Waseda, T., Tamura, H., & Kinoshita, T. (2012). Freakish sea index and sea states during ship
accidents. Journal of Marine Science and Technology, 17, 305–314.
63. Waseda, T., In, K., Kiyomatsu, K., Tamura, H., Miyazawa, Y., & Iyama, K. (2014). Predicting
freakish sea state with an operational third-generation wave model. Natural Hazards and Earth
System Science, 14, 945–957.
64. Zakharov, V. E. (1968). Stability of periodic waves of finite amplitude on the surface of a deep
fluid. Journal of Applied Mechanics and Technical Physics, 9, 190–194.
65. Zeng, H., & Trulsen, K. (2012). Evolution of skewness and kurtosis of weakly nonlinear unidirectional waves over a sloping bottom. Natural Hazards and Earth System Science, 12, 631–
638.
