Open Access

Simulation of Irregular Waves in a Numerical Wave Tank


Cite

1. Bai, W. and R.E. Taylor, Higher-order boundary element simulation of fully nonlinear wave radiation by oscillating vertical cylinders. Applied Ocean Research, 2006. 28(4): p. 247-265.10.1016/j.apor.2006.12.001Search in Google Scholar

2. Brandini, C. and S. Grilli, Modeling of freak wave generation in a 3D-NWT. 2001.Search in Google Scholar

3. Clément, A., Coupling of two absorbing boundary conditions for 2D time-domain simulations of free surface gravity waves. Journal of Computational Physics, 1996. 126(1): p. 139-151.10.1006/jcph.1996.0126Search in Google Scholar

4. Das, S. and K.F. Cheung, Hydroelasticity of marine vessels advancing in a seaway. Journal of Fluids and Structures, 2012. 34(0): p. 271-290.10.1016/j.jfluidstructs.2012.05.015Search in Google Scholar

5. He, G. and M. Kashiwagi, A time-domain higher-order boundary element method for 3D forward-speed radiation and diffraction problems. Journal of Marine Science and Technology, 2013. 19(2): p. 228-244.10.1007/s00773-013-0242-1Search in Google Scholar

6. Isaacson, M. and K.F. Cheung, Second order wave diffraction around two-dimensional bodies by timedomain method. Applied Ocean Research, 1991. 13(4): p. 175-186.10.1016/S0141-1187(05)80073-2Search in Google Scholar

7. Jagannathan, S., Non‐linear free surface flows and an application of the Orlanski boundary condition. International journal for numerical methods in fluids, 1988. 8(9): p. 1051-1070.10.1002/fld.1650080907Search in Google Scholar

8. Kim, T. and Y. Kim, Numerical analysis on floatingbody motion responses in arbitrary bathymetry. Ocean Engineering, 2013. 62: p. 123-139.10.1016/j.oceaneng.2013.01.012Search in Google Scholar

9. Kim, Y., D.C. Kring, and P.D. Sclavounos, Linear and nonlinear interactions of surface waves with bodies by a three-dimensional Rankine panel method. Applied Ocean Research, 1997. 19(5-6): p. 235-249.10.1016/S0141-1187(97)00034-5Search in Google Scholar

10. Liao, Z.-P., Extrapolation non-reflecting boundary conditions. Wave Motion, 1996. 24(2): p. 117-138.10.1016/0165-2125(96)00010-8Search in Google Scholar

11. Liu, S.K. and A.D. Papanikolaou, Time-domain hybrid method for simulating large amplitude motions of ships advancing in waves. International Journal of Naval Architecture and Ocean Engineering, 2011. 3(1): p. 72-79.10.2478/JNAOE-2013-0047Search in Google Scholar

12. Liu, S.K., A. Papanikolaou, and G. Zaraphonitis, Prediction of added resistance of ships in waves. Ocean Engineering, 2011. 38(4): p. 641-650.10.1016/j.oceaneng.2010.12.007Search in Google Scholar

13. Orlanski, I., A simple boundary condition for unbounded hyperbolic flows. Journal of computational physics, 1976. 21(3): p. 251-269.10.1016/0021-9991(76)90023-1Search in Google Scholar

14. Xu, G. and W.-y. Duan, Time-domain simulation for water wave radiation by floating structures (Part A). Journal of Marine Science and Application, 2008. 7: p. 226-235.10.1007/s11804-008-8033-5Search in Google Scholar

15. Zhang, W.D.T., Non-reflecting simulation for fullynonlinear irregular wave radiation. 24th International Workshop on Water Waves and Floating Bodies, 2009.Search in Google Scholar

eISSN:
2083-7429
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences