## Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 5American Society of Mechanical Engineers, 2001 - Arctic regions |

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Page 137

The methods for using linear frequency domain

The methods for using linear frequency domain

**hydrodynamic**forces to calculate the linear time - domain response of a ... a methodology for performing non - linear time - domain structural analysis using exact linear**hydrodynamics**.Page 139

Calculate the

Calculate the

**hydrodynamic**loads ( diffraction forces and**hydrodynamic**coefficients ) of the MOB using the Nbody or generalized modes solution of a**hydrodynamic**analysis code such as HIPAN . 2. Map frequency - domain**hydrodynamic**loads ...Page 164

Fluid Panel Model For the

Fluid Panel Model For the

**hydrodynamic**analysis , an accurate representation of the wetted surface is required . A panel mesh involving 4,480 panels is shown in Figure 5. ( In the actual**hydrodynamic**calculations , double symmetry ( 12 ] ...### What people are saying - Write a review

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### Contents

OMAE2001OSU5019 | 93 |

OMAE2001OSU5021 | 101 |

OMAE2001OSU5022 | 111 |

Copyright | |

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amplitude analysis angle applied arrangement assumed beam bending body bottom breakwater bridge calculated chamber coefficient compared components concept Conference considered construction deformation depth described developed device direction displacement distribution dynamic effect elastic element Engineering equation evaluate experiment experimental field Figure floating structure flow force frequency function girder horizontal hydrodynamic hydroelastic increase International irregular waves Japan layer length linear load maneuvers mass mean measured Mega-Float method mode modules mooring motion observed obtained ocean Offshore operation performance position predicted present pressure problem Proceedings ratio reduce reef region Research respectively response rigid scale ship shown shows side significant simulation spectrum submerged plate surface Table Tokyo turbine University vertical VLFS wave energy wave height wave period wind