Hydrodynamic analysis of a floating body with an open chamber using a 2D fully nonlinear numerical wave tank

Hydrodynamic analysis of a surface-piercing body with an open chamber was performed with incident regular waves and forced-heaving body motions. The floating body was simulated in the time domain using a 2D fully nonlinear numerical wave tank (NWT) technique based on potential theory. This paper foc...

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Veröffentlicht in:International journal of naval architecture and ocean engineering 2012, 4(3), , pp.281-290
Hauptverfasser: Uzair, Ahmed Syed, Koo, Weoncheol
Format: Artikel
Sprache:eng
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Zusammenfassung:Hydrodynamic analysis of a surface-piercing body with an open chamber was performed with incident regular waves and forced-heaving body motions. The floating body was simulated in the time domain using a 2D fully nonlinear numerical wave tank (NWT) technique based on potential theory. This paper focuses on the hydrodynamic behavior of the free surfaces inside the chamber for various input conditions, including a two-input system: both incident wave profiles and forced body velocities were implemented in order to calculate the maximum surface elevations for the respective inputs and evaluate their interactions. An appropriate equivalent linear or quadratic viscous damping coefficient, which was selected from experimental data, was employed on the free surface boundary inside the chamber to account for the viscous energy loss on the system. Then a comprehensive parametric study was performed to investigate the nonlinear behavior of the wave-body interaction.
ISSN:2092-6782
2092-6790
2092-6782
DOI:10.2478/ijnaoe-2013-0096