Out-of-plane bending stiffness and hotspot stress based on advanced numerical analysis techniques

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초록

This paper aims to presents an integrated procedure to reach the out-of-plane bending (OPB) moment-induced hotspot stress distribution for the mooring chains of an 8MW class floating offshore wind turbine platform (FOWT). Three-link models of the mooring chains were used to obtain the OPB stiffness, mid-span stress distribution, hotspot stress, and stress concentration factor based on the prescribed rotation approach (PRA), direct tension approach (DTA), and empirical formula. Multi-link analyses were also conducted to build a tension angle-interlink angle relationship between two successive links at a given tension level. A combination of three-link and multi-link analyses produced the relation of the hotspot stress-tension angle. After a stress interpolation procedure for the hotspot stress history, the hotspot stress range distributions were presented using rainflow counting technique. The tension-induced stress range distribution well followed the Rayleigh distribution, while the OPB moment elevated the hotspot stress which will seriously affect the fatigue accumulation.

키워드

OPB momentinterlink angletension anglehotspot stressthree-link analysismulti-link analysisstress interpolation
제목
Out-of-plane bending stiffness and hotspot stress based on advanced numerical analysis techniques
저자
Choung, JoonmoLee, Jae-bin
DOI
10.1080/17445302.2018.1561174
발행일
2019-10-03
유형
Article
저널명
Ships and Offshore Structures
14
페이지
S148 ~ S160