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Research Article

A numerical investigation into the effects of long-term wave-induced loads on the cross structure of a wave-piercing trimaran

& | (Reviewing Editor)
Article: 1387951 | Received 28 Jun 2017, Accepted 26 Sep 2017, Published online: 13 Oct 2017

References

  • Akbari Vakilabadi, K., Khatami, M. R., & Seif, M. S. (2014). Experimental study on heave and pitch motion characteristics of a wave-piercing trimaran. Journal of Transactions of FAMENA, 38, 13–26.
  • Bashir, M. B., Tao, L., Atlar, M., & Dow, R. S. (2013). Experimental and numerical investigation of the wave-induced loads on a Deep-V catamaran in regular waves. International Conference on Ocean, Offshore and Arctic Engineering, Nantes.
  • Dai, Y. S., Sheen, J. W., & Song, J. Z. (2007). Ship wave loads. Beijing: National Defense Industry Press.
  • Dobashi, J. (2014). Wave loads acting on cross deck of trimaran in oblique waves. Journal of Naval Architects and Ocean Engineers, 20, 69–75.
  • Fang, M. C., & Chen, T. Y. (2008). A parametric study of wave loads on trimaran ships traveling in waves. Ocean Engineering, 35, 749–762.10.1016/j.oceaneng.2008.02.001
  • Guedes Soares, C., Fonseca, N., & Pascoal, R. (2004). Long term prediction of non-linear vertical bending moments on a fast monohull. Applied Ocean Research, 26, 288–297.10.1016/j.apor.2005.08.002
  • Guedes Soares, C., & Schellin, T. E. (1996). Long term distribution of non-linear wave induced vertical bending moments on a containership. Marine Structures, 9, 333–352.10.1016/0951-8339(95)00028-3
  • Hagen, N., Dacha, N. M. C., & Olliver, G. F. (1986). Global wave statistics. Feltham: British Maritime Technology.
  • Hirdaris, S. E., & Temarel, P. (2009). Hydroelasticity of Ships - recent advances and future trends. Proceedings of the IMechE, Part M: Journal of Engineering for the Maritime Environment, 223(3), 305–330.
  • Hirdaris, S. E., Bai, W., Dessi, D., Ergin, A., Gu, X., Hermundstad, O. A., … Incecik, A. (2014). Loads for use in the design of ships and offshore structures. Ocean Engineering, 78, 131–174.10.1016/j.oceaneng.2013.09.012
  • IACS Recommendation. (2000, June). IACS recommendation no.34, standard wave data, Rev. 1.
  • Jiao, J., Sun, S., & Ren, H. (2016). Predictions of wave induced ship motions and load by large scaled of model measurement at sea and numerical analysis. Journal of Brodogradnja/Shipbuilding, 67(2), 81–100.
  • Ma, M., Zhao, C., & Hughes, O. (2014). A practical method to apply hull girder sectional loads to full-ship 3D finite-element models using quadratic programming. Ships and Offshore Structures, 9, 257–265.10.1080/17445302.2013.770725
  • MAESTRO. (2012). MAESTRO: Version 10.0 users’ manual. Stevensville, MD: Advanced Marine Technology Centre. Retrieved from http://www.MAESTROmarine.com
  • Min, X., & Shi-Lian, Z. (2011). A numerical study on side hull optimization for trimaran. Journal of Hydrodynamics, 23, 265–272.
  • Mohammadi, M., Khedmati, M. R., & Akbari Vakilabadi, K. (2014). Effects of hull damage on global loads acting on a trimaran ship. Journal of Ships and Offshore Structures, 10, 635–652.
  • Parunov, J., Senjanović, I., & Pavićević, M. (2004). Use Of vertical wave bending moments from hydrodynamic analysis in design of oil tankers. Journal of RINA Transactions, 146, 247–260.
  • Pei, Z., Zhu, Z., & Wu, W. (2015). Research of load and structural direct calculation on flat-type river-sea-going ship. Journal of Traffic and Transportation Engineering, 3, 266–276.
  • Schellin, T. E., & de Lucas, A. P. (2004). Longitudinal strength of a high-speed ferry. Applied Ocean Research, 26(6), 298–308.10.1016/j.apor.2005.08.004