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2017 | 24 | Special Issue S1 |

Tytuł artykułu

Numerical modelling of structures with uncertainties

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The nature of environmental interactions, as well as large dimensions and complex structure of marine offshore objects, make designing, building and operation of these objects a great challenge. This is the reason why a vast majority of investment cases of this type include structural analysis, performed using scaled laboratory models and complemented by extended computer simulations. The present paper focuses on FEM modelling of the offshore wind turbine supporting structure. Then problem is studied using the modal analysis, sensitivity analysis, as well as the design of experiment (DOE) and response surface model (RSM) methods. The results of modal analysis based simulations were used for assessing the quality of the FEM model against the data measured during the experimental modal analysis of the scaled laboratory model for different support conditions. The sensitivity analysis, in turn, has provided opportunities for assessing the effect of individual FEM model parameters on the dynamic response of the examined supporting structure. The DOE and RSM methods allowed to determine the effect of model parameter changes on the supporting structure response

Słowa kluczowe

Wydawca

-

Rocznik

Tom

24

Opis fizyczny

p.125-132,fig.,ref.

Twórcy

autor
  • Faculty of Ocean Engineering and Ship Technology, Gdansk University of Technology, 11/12 Narutowicza St., 80-233 Gdansk, Poland

Bibliografia

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  • 2. Kahsin, M., Luczak, M.: Numerical Model Quality Assess-ment of Offshore Wind Turbine Supporting Structure Based on Experimental Data, STRUCTURAL HEALTH MONITORING 2015: SYSTEM RELIABILITY FOR VERIFICATION AND IMPLEMENTATION, VOLS. 1 AND 2 Book Series: Structural Health Monitoring, pp. 2817-2824 Published: 2015.
  • 3. Kozicki J., Tejchman-Konarzewski A., Mühlhaus H.: Discrete simulations of a triaxial compression test for sand by DEM. INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, iss. 18 (2014), pp.1923-1952.
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  • 9. Di Lorenzo E. Petrone G., Manzat S., et al.: STRUC-TURAL HEALTH MONITORING-AN INTERNA-TIONAL JOURNAL Volume 15, Issue: 3, pp. 289-301 Published: MAY 2016.
  • 10. El-KafafyM., Peeters B., Guillaume P., et al.: MECHANI-CAL SYSTEMS AND SIGNAL PROCESSING Volume: 72-73, pp. 567-589 Published: MAY 2016.
  • 11. Litwin W., Olszewski A.: Water-Lubricated Sintered Bronze Journal Bearings—Theoretical and Experimental Research// TRIBOLOGY TRANSACTIONS. -Vol. 57, no. 1 (2014), pp.114-122.
  • 12. Price, D. C .; Cla rk, M. A., Ba rsdel l, B. R ., et a l.: Opt imiz-ing performance-per-watt on GPUs in high performance comput ing, COMPU TER SCIENCE-R ESEA RCH A ND DEVELOPMENT Volu me 31, Issue 4, pp.185-193 Pub-lished: NOV 2016.
  • 13. Locharla G., Rao K., Sudeendra K., Mahapatra K., et al.: Implementation of MIMO data reordering and sched-uling methodologies for eight-parallel variable length multi-path delay commutator FFT/IFFT, IET COMPUT-ERS AND DIGITAL TECHNIQUES Volume 10, Issue: 5, pp. 215-225 Published: SEP 2016.
  • 14. Iwicki P., Tejchman A., Chróścielewski J.: Dynamic FE simulations of buckling process in thin-walled cylindrical metal silos. THIN-WALLED STRUCTURES. Vol. 84 (2014), pp.344-359.
  • 15. Górski J., Mikulski T., Oziębło M., Winkelmann K.: Effect of geometric imperfections on aluminium silo capacities// STAHLBAU. -Vol. 84, iss. 1 (2015), pp.52-57.
  • 16. Dymarski C., Dymarski P., Zywicki, J.: DESIGN AND STRENGTH CALCULATIONS OF THE TRIPOD SUP-PORT STRUCTURE FOR OFFSHORE POWER PLANT, POLISH MARITIME RESEARCH Volume: 22, Issue: 1, pp. 36-46, Published: JAN 2015.
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  • 21. Pannerselvam, R.: Design and Analysis of Experiments, ISBN 978-81-203-4499-0, New Dehli, India, 2012.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-6283b6ec-2202-4dd2-903b-c40c75e16423
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