Have a personal or library account? Click to login
Manoeuvring Prediction of KVLCC2 with Hydrodynamic Derivatives Generated by a Virtual Captive Model Test Cover

Manoeuvring Prediction of KVLCC2 with Hydrodynamic Derivatives Generated by a Virtual Captive Model Test

By: Kun Dai and  Yunbo Li  
Open Access
|Dec 2019

References

  1. 1. IMO Res MSC (2002): Standards for Ship Manoeuvrability, 137 (76).
  2. 2. IMO MSC/Circ.1053 (2002): Explanatory Notes to the Standards for Ship Manoeuvrability.
  3. 3. ITTC, Manoeuvring Committee (2008): Final Report and Recommendations to the 25th ITTC. Proceedings of 25th International Towing Tank Conference, Fukuoka, Japan.
  4. 4. Mofidi A., Carrica P.M. (2014): Simulations of Zigzag Maneuvers for a Container Ship with Direct Moving Rudder and Propeller. Comput. Fluids, 96, 191–203.10.1016/j.compfluid.2014.03.017
  5. 5. Shen Z., Wan D., Carrica P.M. (2015): Dynamic Overset Grids in OpenFOAM with Application to KCS Self-Propulsion and Maneuvering. Ocean. Eng., 108, 287–306.10.1016/j.oceaneng.2015.07.035
  6. 6. Wang J., Zou L., Wan D. (2018): Numerical Simulations of Zigzag Maneuver of Free Running Ship in Waves by RANSOverset Grid Method. Ocean. Eng., 162, 55–79.10.1016/j.oceaneng.2018.05.021
  7. 7. Abkowitz, M.A. (1964): Lectures on Ship Hydrodynamics-Steering and Manoeuvrability. In: Hydro- and Aerodynamics Lab, Report No. Hy-5, Lyngby, Copenhagen, Denmark.
  8. 8. Yasukawa H., Yoshimura, Y. (2015): Introduction of MMG Standard Method for Ship Maneuvering Predictions. Journal of Marine Science and Technology, 20(1), 37–52.10.1007/s00773-014-0293-y
  9. 9. Sakamoto N., Carrica P.M., Stern F. (2012): URANS Simulations of Static and Dynamic Maneuvering for Surface Combatant: Part 1. Verification and Validation for Forces, Moment, and Hydrodynamic Derivatives. Journal of Marine Science and Technology, 17(4), 422–445.10.1007/s00773-012-0178-x
  10. 10. Hai-peng G., Zao-jian Z. (2017): System-Based Investigation on 4-DOF Ship Maneuvering with Hydrodynamic Derivatives Determined by RANS Simulation of Captive Model Tests. Applied Ocean Research, 68, 11-25.10.1016/j.apor.2017.08.006
  11. 11. Yi L., Lu Z., Zaojian Z., Haipeng G. (2018): Predictions of Ship Maneuverability Based on Virtual Captive Model Tests. Engineering Applications of Computational Fluid Mechanics, 12(1), 334–353.10.1080/19942060.2018.1439773
  12. 12. Kim H., Akimoto H., Islam H. (2015): Estimation of the Hydrodynamic Derivatives by RANS Simulation of Planar Motion Mechanism Test. Ocean Engineering, 108, 129–139.10.1016/j.oceaneng.2015.08.010
  13. 13. Islam H., Guedes Soares C. (2018): Estimation of Hydrodynamic Derivatives of a Container Ship Using PMM Simulation in OpenFOAM. Ocean Engineering, 108, 164–425.10.1016/j.oceaneng.2018.06.063
  14. 14. Ueno M., Yoshimura Y., Tsukada Y., Miyazaki H. (2009): Circular Motion Tests and Uncertainty Analysis for Ship Maneuverability. Journal of Marine Science and Technology, 14, 469–484.10.1007/s00773-009-0065-2
  15. 15. Yoshimura Y., Ueno M., Tsukada Y. (2008): Analysis of Steady Hydrodynamic Force Components and Prediction of Manoeuvring Ship Motion with KVLCC1, KVLCC2 and KCS. SIMMAN 2008, Workshop on verification and validation of ship manoeuvring simulation method, Workshop Proceedings, Vol. 1, Copenhagen, pp. E80–E86.
  16. 16. SIMMAN (2008): Part C Captive and Free Model Test Data. Workshop on verification and validation of ship manoeuvring simulation method, Workshop Proceedings, Vol. 1, Copenhagen.
  17. 17. Stern F., Wilson R.V., Coleman H.W., Paterson E.G. (2001): Comprehensive Approach to Verification and Validation of CFD Simulations Part 1: Methodology and Procedures. Journal of Fluids Engineering, 123(4), 793–802.10.1115/1.1412235
  18. 18. Wilson R., Shao J., Stern F. (2004): Discussion: Criticisms of the “Correction Factor” Verification Method. Journal of Fluids Engineering, 126(4), 704–706.10.1115/1.1780171
  19. 19. SIMMAN (2014). Retrieved from http://simman2014.dk/ship-data/moeri-kvlcc2-tanker/geometry-and-conditions-moeri-kvlcc2-tanker/.
DOI: https://doi.org/10.2478/pomr-2019-0062 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 16 - 26
Published on: Dec 31, 2019
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Kun Dai, Yunbo Li, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.