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The CFD Method-Based Research on Damaged Ship’s Flooding Process in Time-Domain Cover

The CFD Method-Based Research on Damaged Ship’s Flooding Process in Time-Domain

By: Hu Li-Fen,  Qi Huibo,  Li Yuemeng,  Li Wubin and  Chen Shude  
Open Access
|Apr 2019

References

  1. 1. Cao X Y, Ming R F, Zhang A M. Flooding characteristic simulation study of damaged ship based on 3D SPH method. 16th Academic Symposium on China’s marine (Shore) Engineering, 2013, Dalian, China.
  2. 2. D.K. Lee, S.Y. Hong, G.-J. Lee. Theoretical and experimental study on dynamic behavior of a damaged ship in wave. Ocean Engineering, 2007, 34: 21-31.10.1016/j.oceaneng.2006.02.002
  3. 3. Gao Z L, Vassalos D, Gao Q X. Numerical simulation of water flooding into a damaged vessel’s compartment by the volume of fluid method. Ocean Engineering, 2010, 37: 1428-1442.10.1016/j.oceaneng.2010.07.010
  4. 4. Gao Q X, Vassalos D. Numerical study of damage ship hydrodynamics. Ocean Engineering, 2012, 55: 199-205.10.1016/j.oceaneng.2012.08.003
  5. 5. Gao Z L, Gao Q X, Vassalos D. Numerical study of a damaged ship flooding in beam seas. Ocean Engineering, 2013, 61: 77-87.10.1016/j.oceaneng.2012.12.038
  6. 6. Gao Z L, Gao Q X, Vassalos D. Numerical simulation of flooding of a damaged ship. Ocean Engineering, 2011, 38: 1649-1662.10.1016/j.oceaneng.2011.07.020
  7. 7. IMO. Explanatory Notes to the SOLAS Chapter II-1 Subdivision and Damage Stability Regulations, Resolution MSC. 2008, 281(85).
  8. 8. Lemoine, L., Mahé, F., Morisset, N., Bertin, R. Interpretation and design implications of probabilistic damage stability regulation, Proceedings of the 13th International Ship Stability Workshop, 2013: 214–227, Brest, France.
  9. 9. Li Y M, Duan W Y, Jin Y L et al. Flooding Process of Damaged Ship Based on CFD. Shipbuilding of China, 2016, 57(2): 149-163.
  10. 10. Lyu Z W, Ma K, Liu F. Military ship’s subdivision optimization for reinforcement of anti-wind capacity after damage. Journal of Marine Science and Technology, 2015, 20: 579-589.10.1007/s00773-015-0313-6
  11. 11. Manderbacka, T., Mikkola, T., Ruponen, P., Matusiak, J. Transient response of a ship to an abrupt flooding accounting for the momentum flux. Journal of Fluids Structure, 2015, 57: 108–126.10.1016/j.jfluidstructs.2015.06.001
  12. 12. Manderbacka, T., Ruponen, P. The impact of the inflow momentum on the transient roll response of a damaged ship. Ocean Engineering, 2016, 120: 346–352.10.1016/j.oceaneng.2016.02.012
  13. 13. Ruponen, P., Queutey, P., Kraskowski, M., Jalonen, R., Guilmineau, E. On the calculation of cross-flooding time. Ocean Engineering, 2012, 40: 27–39.10.1016/j.oceaneng.2011.12.008
  14. 14. Ruponen, P., Pulkkinen, A., Laaksonen, J. A method for breach assessment onboard a damaged passenger ship. Applied Ocean Research, 2017, 64: 236-248.10.1016/j.apor.2017.01.017
  15. 15. Ruponen, P. On the effects of non-watertight doors on progressive flooding in a damaged passenger ship. Ocean Engineering, 2017, 130: 115-125.10.1016/j.oceaneng.2016.11.073
  16. 16. Ruponen, P. Adaptive time step in simulation of progressive flooding. Ocean Engineering, 2014, 78: 35–44.10.1016/j.oceaneng.2013.12.014
  17. 17. Ruponen, P. Model tests for the progressive flooding of a box-shaped barge. Helsinki University of Technology, Ship Laboratory Report M-292, 2006.
  18. 18. Ruponen, P. Progressive flooding of a damaged passenger ship. Helsinki University of Technology, Helsinki, Finland, 2007.
  19. 19. Ruponen, P., Sundell, T., Larmela, M. Validation of a simulation method for progressive flooding. International Shipbuilding Progress, 2007, 54: 305-321.
  20. 20. Santos, T.A., Winkle, I.E., Guedes Soares, C. Time domain modelling of the transient asymmetric flooding of Ro-Ro ships. Ocean Engineer. 2002, 29: 667–688.10.1016/S0029-8018(01)00037-3
  21. 21. Schreuder, M., Hogström, P., Ringsberg, J.W., Johnson, E., Janson, C.-E. A method for assessment of the survival time of a ship damaged by collision. Journal of Ship Research, 2011, 55 (2): 86–99.10.5957/jsr.2011.55.2.86
  22. 22. Tiago A. Santos, C. Guedes Saores. Study of damaged ship motions taking into account floodwater dynamics. Journal of Marine Science and Technology, 2008, 13(3): 291-307.10.1007/s00773-008-0011-8
  23. 23. Tiago A. Santos, C. Guedes Saores. Numerical assessment of factors affecting the survivability of damaged ro-ro ships in waves. Ocean Engineering, 2009, 36(11): 797-809.10.1016/j.oceaneng.2009.04.004
  24. 24. Vassalos, D., Ikeda, Y., Jasionowski, A., Kuroda, T. Transient Flooding on Large Passenger Ships. Proceedings of the 7th International Ship Stability Workshop, 2004, Shanghai, China.
  25. 25. Ypma, E., Turner, T. An approach to the validation of ship flooding simulation models. Proceedings of the 11th International Ship Stability Workshop, 2010, Wageningen, The Netherlands.
DOI: https://doi.org/10.2478/pomr-2019-0009 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 72 - 81
Published on: Apr 15, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Hu Li-Fen, Qi Huibo, Li Yuemeng, Li Wubin, Chen Shude, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.