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Diffraction-radiation of multiple floating structures in directional waves
Published in Elsevier Science Ltd, Exeter, United Kingdom
2001
Volume: 28
   
Issue: 2
Pages: 201 - 234
Abstract
The dynamics of multiple floating structures have been studied using the finite element method. The emphasis is on the hydrodynamic behaviour of multiple bodies under a multi-directional wave field. A two-dimensional numerical model has been adopted to evaluate hydrodynamic coefficients and forces in an oblique wave field. The responses in sway, heave and roll modes are reported. The linear filter technique is then used to extrapolate the responses under directional waves. The effect of mean wave direction and directional homogeneity on the hydrodynamic behaviour of the structure is studied. Based on the present study, it is found that the two-dimensional model is applicable to investigate the wave-structure interaction problems of the type herein considered. (C) 2000 Elsevier Science Ltd. All rights reserved.The dynamics of multiple floating structures have been studied using the finite element method. The emphasis is on the hydrodynamic behaviour of multiple bodies under a multi-directional wave field. A two-dimensional numerical model has been adopted to evaluate hydrodynamic coefficients and forces in an oblique wave field. The responses in sway, heave and roll modes are reported. The linear filter technique is then used to extrapolate the responses under directional waves. The effect of mean wave direction and directional homogeneity on the hydrodynamic behaviour of the structure is studied. Based on the present study, it is found that the two-dimensional model is applicable to investigate the wave-structure interaction problems of the type herein considered.
About the journal
JournalData powered by TypesetOcean Engineering
PublisherData powered by TypesetElsevier Science Ltd, Exeter, United Kingdom
ISSN00298018
Open AccessNo
Concepts (21)
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    Extrapolation
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    Finite element method
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    Fluid structure interaction
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    Mathematical models
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    Ocean currents
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    Structural analysis
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    WATER WAVE EFFECTS
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    DIRECTIONAL WAVES
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    LINEAR FILTERING METHOD
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    MULTIPLE FLOATING STRUCTURES
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    OBLIQUE WAVES
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    Ocean engineering
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    Finite element analysis
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    FLOATING PLATFORM
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    Hydrodynamics
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    Radiation
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    WAVE DIFFRACTION
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    Wave direction
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    Wave-structure interaction
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    FLOATING STRUCTURE
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    WAVE DIFFRACTION