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A Method to Determine the Tightening Sequence for Standing Rigging of a Mast Cover

A Method to Determine the Tightening Sequence for Standing Rigging of a Mast

By: Leszek Samson and  Maciej Kahsin  
Open Access
|Dec 2019

References

  1. 1. DNV GL, Rules for Classification.: Design and construction of large modern yacht rigs, 2016.
  2. 2. Lloyd’s Register., Rules and Regulations for the Classification of Ships.: Masts and standing rigging, Part 4, Section 10, 2017.
  3. 3. Ślęczka D., Ziemiański L.,: Dynamic response of the mast to rapid break of guy rope (in Polish), Budownictwo i Inżynieria Środowiska, 45, 2007.
  4. 4. Grabe G.: The Rig of the “UCA” - Finite element Analysis, University of Applied Sciences, Amsterdam 2004.
  5. 5. Grabe G.: The Carbon and PBO Rig for the “sailOvation” - Finite element Analysis, University of Applied Sciences, Kiel.
  6. 6. Grabe G.: The Rig of the research sailing yacht “Dyna” Measurements of Forces and FEA, High Performance Yacht Design Conference, Auckland-New Zealand 2002.10.3940/rina.ya.2002.09
  7. 7. Rizzo C., Boote D., Scantling of mast and rigging of sail boats: A few hints from a test case to develop improved design procedures, 11th International Symposium on Practical Design of Ships and Other Floating Structures, Brazil 2010.10.1201/9780203874981.pt2g
  8. 8. Bentes J., Menezes R., Riera J.: Dynamic response of guyed towers in transmission lines submitted to broken conductors, 9th International Conference on Structural Dynamics, Portugal 2014.
  9. 9. Nelofer A., Kumar S.: Finite Element Analysis of Guyed Masts under Seismic Excitation, International Journal of Science and Research 2015.
  10. 10. Cuomo A., Zucker H., Dreslin S.: Tower Technician Killed When Guyed Tower Collapsed, Case Report 09NY095, Fatality Assessment and Control Evaluation, New York-USA 2017.
  11. 11. Hensley G., Plaut R.: Three-dimensional analysis of the seismic response of guyed masts, Engineering Structures 29, 2006.10.1016/j.engstruct.2006.11.019
  12. 12. ADINA R&D Inc. Theory and Modeling Guide, Watertown, MA, USA,2009
  13. 13. NX Nastran, Theoretical Manual, 2016.
  14. 14. Bureau Veritas, Rules for the Classification and the Certification of Yachts, NR500, 2016
  15. 15. Kozioł K., Guyed bar structures: the analysis of dynamic response to exceptional loads (in Polish), Politechnika Krakowska, Kraków 2007.
  16. 16. Coria I., Abasolo M., Olaskoaga I., Etxezarreta A., Aguirrebeitia J.: A new methodology for the optimization of bolt tightening sequences for ring type joints, Ocean Engineering 129, 2017, pp.441–450.10.1016/j.oceaneng.2016.10.049
  17. 17. Yu-wen D., You-yuan W.: A Research to Cable Force Optimizing Calculation of Cable-stayed Arch Bridge, Procedia Engineering 37, 2012, pp.155 – 160.10.1016/j.proeng.2012.04.219
  18. 18. Bradon J., Chaplin C., Ermolaeva N.: Modelling the cabling of rope systems, Engineering Failure Analysis 14, 2007, pp.920–934.10.1016/j.engfailanal.2006.11.032
  19. 19. Kozak J., Tarełko W.: Case study of masts damage of the sail training vessel POGORIA. Engineering Failure Analysis, Volume 18, Issue 3, 2011, pp.819-827.10.1016/j.engfailanal.2010.11.016
DOI: https://doi.org/10.2478/pomr-2019-0065 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 47 - 55
Published on: Dec 31, 2019
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Leszek Samson, Maciej Kahsin, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.