DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN

Floating marine structures are exposed to various environmental loads. When the response of structures caused by these loads can be expressed as a multi-modal spectrum in the frequency domain. To estimate the fatigue damage by these loads, various fatigue damage models have been suggested by many pr...

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Main Authors: Sang Woo Kim, Seung Jae Lee
Format: Article
Language:English
Published: Faculty of Mechanical Engineering and Naval Architecture 2020-01-01
Series:Brodogradnja
Online Access:https://hrcak.srce.hr/file/340016
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spelling doaj-d398f20f81a94a88bfa6b84c0274870b2020-11-25T03:38:40ZengFaculty of Mechanical Engineering and Naval ArchitectureBrodogradnja0007-215X1845-58592020-01-01711395710.21278/brod71103233786DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAINSang Woo Kim0Seung Jae Lee1Division of Naval Architecture and Ocean Systems Engineering, Korea Maritime and Ocean University, Busan, Republic of KoreaDivision of Naval Architecture and Ocean Systems Engineering, Korea Maritime and Ocean University, Busan, Republic of KoreaFloating marine structures are exposed to various environmental loads. When the response of structures caused by these loads can be expressed as a multi-modal spectrum in the frequency domain. To estimate the fatigue damage by these loads, various fatigue damage models have been suggested by many previous researches. The offshore riser system, for example, that is a typical marine structure shows a quarter-modal response. However, existing fatigue damage models are suitable for spectrum with tri-modal in maximum. Consequently, it is necessary to develop a new fatigue damage model that can accurately calculate fatigue damage of quarter-modal spectrum. In this research, the Benasciutti and Tovo model was adopted for developing a new fatigue damage model. And 900 quarter-modal spectra are used to derive a new weighting factor in the Benasciutti and Tovo model by investigating the relationship between the linear weighting factor and the bandwidth parameters. Finally, a new linear weighting factor is derived using the least square method. The suitability of the new fatigue damage model with the derived weighting factor is evaluated by frequency domain and time domain results and their comparison with existing model’s results.https://hrcak.srce.hr/file/340016
collection DOAJ
language English
format Article
sources DOAJ
author Sang Woo Kim
Seung Jae Lee
spellingShingle Sang Woo Kim
Seung Jae Lee
DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
Brodogradnja
author_facet Sang Woo Kim
Seung Jae Lee
author_sort Sang Woo Kim
title DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
title_short DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
title_full DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
title_fullStr DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
title_full_unstemmed DEVELOPMENT OF A NEW FATIGUE DAMAGE MODEL FOR QUARTER-MODAL SPECTRA IN FREQUENCY DOMAIN
title_sort development of a new fatigue damage model for quarter-modal spectra in frequency domain
publisher Faculty of Mechanical Engineering and Naval Architecture
series Brodogradnja
issn 0007-215X
1845-5859
publishDate 2020-01-01
description Floating marine structures are exposed to various environmental loads. When the response of structures caused by these loads can be expressed as a multi-modal spectrum in the frequency domain. To estimate the fatigue damage by these loads, various fatigue damage models have been suggested by many previous researches. The offshore riser system, for example, that is a typical marine structure shows a quarter-modal response. However, existing fatigue damage models are suitable for spectrum with tri-modal in maximum. Consequently, it is necessary to develop a new fatigue damage model that can accurately calculate fatigue damage of quarter-modal spectrum. In this research, the Benasciutti and Tovo model was adopted for developing a new fatigue damage model. And 900 quarter-modal spectra are used to derive a new weighting factor in the Benasciutti and Tovo model by investigating the relationship between the linear weighting factor and the bandwidth parameters. Finally, a new linear weighting factor is derived using the least square method. The suitability of the new fatigue damage model with the derived weighting factor is evaluated by frequency domain and time domain results and their comparison with existing model’s results.
url https://hrcak.srce.hr/file/340016
work_keys_str_mv AT sangwookim developmentofanewfatiguedamagemodelforquartermodalspectrainfrequencydomain
AT seungjaelee developmentofanewfatiguedamagemodelforquartermodalspectrainfrequencydomain
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