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Development and verification of modeling practice for numerical estimation of wind loads on offshore floating structures

Abstract

Mean wind load on a semi-submersible rig and an FPSO was investigated by using Computational Fluid Dynamics (CFD) for the modeling practice developed in Reproducible Offshore CFD JIP. The modeling practice is benchmarked against available model test results for a semi-submersible rig and an FPSO in blind manner between verifiers. For the semi-submersible rig, an even keel and four inclined conditions were considered. The uncertainty levels between verifiers’ results were within 10%. Slightly larger scatter was observed in inclined conditions but did not show any larger than 10% uncertainty level. It was possible to reduce the discrepancy by easing the setting difference from the wind tunnel test by introducing gap around deckbox and columns. For the FPSO, the results were within 3% for forces and within 14% for moments. After considering model test setup including the gap between FPSO hull bottom and turntable, the results were improved and within 10% error between the results and wind tunnel test except for 120 and 240° headings.
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Category

Academic article

Language

English

Author(s)

  • Seong Mo Yeon
  • Erwan Auburtin
  • Zhirong Shen
  • Sebastien Loubeyre
  • Byung Hyuk Lee
  • Min-Guk Seo
  • Lucia Sileo
  • Hyun Joe Kim

Affiliation

  • SINTEF Ocean / Skip og havkonstruksjoner
  • Bureau Veritas
  • TechnipFMC
  • South Korea
  • American Bureau of Shipping

Year

2022

Published in

International Journal of Naval Architecture and Ocean Engineering

ISSN

2092-6782

Volume

14

Page(s)

1 - 13

View this publication at Norwegian Research Information Repository