Publication: Numerical and Analytical Approaches for Roll Motion Analysis in Regular Longitudinal Waves
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Walter de Gruyter GmbH
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Abstract In this study numerical and analytical approaches were investigated in terms of accuracy of their results, practicality of solution and ability to reproduce the main features of the parametric roll phenomenon such as loss of stability and bifurcations in parametric roll motion analysis of ships. In general, single-degree-of-freedom analytical approach is based on reducing number of degrees of freedom from 3 to 1 by using the quasi-static Froude-Krylov assumption, incorporating heave and pitch effects by means of a time varying restoring moment. On the other hand, numerical approaches to motion of six and four degrees of freedom are based on three dimensional diffraction/radiation and potential flow theories. In summary, this paper reveals that analytical approaches are sufficiently adequate to obtain accurate practical results for this relatively complex phenomenon.
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Polish Maritime Research
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OPEN
Keywords
Atmospheric Science, Ship Motion Prediction, Naval architecture. Shipbuilding. Marine engineering, Computational Mechanics, VM1-989, Ocean Engineering, Maneuvering Coefficients, panel method, Mechanics, Quantum mechanics, Engineering, Hydrodynamic Optimization, Froude number, FOS: Mathematics, Smoothed Particle Hydrodynamics in Fluid Dynamics, Classical mechanics, Hydrodynamic Analysis of Ship Behavior and Performance, Tropical Cyclone Intensity and Climate Change, Motion (physics), Physics, Statistics, Degrees of freedom (physics and chemistry), Moment (physics), Computer science, parametric roll motion, Earth and Planetary Sciences, Parametric statistics, Physical Sciences, Ship Maneuvering, aqwa, bifurcations, Flow (mathematics), Mathematics