## Ocean waves engineeringThis book presents advances in the theoretical and numerical aspects of problems arising in ocean waves engineering and links theoretical developments with practical applications. |

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### Contents

Secondorder sumfrequency wave loads and response of a tensionleg | 51 |

Some radiation and diffraction problems in the linearised theory | 81 |

Chapter 4 | 115 |

Copyright | |

3 other sections not shown

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### Common terms and phrases

algorithm amplitude analysis analytic mapping applied auxiliary Banerjea behaviour body boundary condition boundary condition boundary value problems circular cylinder components computed considered constant convex set cosh damping coefficient deep water defined denotes derivatives diffraction diffraction potential displacement field drift force element evaluated evolution equations exciting forces expansion far-field first-order flow fluid domain Fluid Mechanics follow from eqn formulation free surface frequency function given horizontal hull hydrodynamic impermeability condition incident wave inner region inner solution instantaneous integral equation interaction Kramers-Kronig relations Laplace's equation leading order leading-order inner Lie group linear Lipschitz continuous low-frequency Mandal Math Mathematics Mclver method motion non-linear numerical obtained oscillations outer solution Painleve Pawlowski radiation potential satisfies scattering second order ship structure submerged technique tension-leg platform tensor fields tether forces truncated variational inequality vector velocity potential vertical cylinder water waves wave forces wave resistance wetted surface