In this study, a time domain higher-order Rankine panel method is developed and applied to evaluate the wavebody interaction problem in shallow water and regular waves. The hydrodynamic effects of forward speed and finite water depth are accounted for. In order to verify the proposed numerical method, the Duisburg Test Case (DTC) container ship is chosen as a study object. The numerical results of the wave-induced ship motions and the added resistance are validated against the data of model tests, which were carried out in the Towing Tank for Manoeuvres in Confined Water at Flanders Hydraulics Research (FHR) in cooperation with Ghent University (UGent) as part of the SHOPERA project
3-D Rankine source method is used to investigate the hydrodynamic interactions between two ships arr...
In this paper, the added wave resistance of an Ultra Large Container Ship (ULCS) in shallow water is...
The present study introduces the analysis of nonlinear ship motion responses and structural loads in...
In this study, a time domain higher-order Rankine panel method is developed and applied to evaluate ...
In this paper, a boundary element programme MHydro, which is based on 3-D Rankine source method, was...
Present investigation is based on a numerical study using a time-domain Rankine panel method. The ef...
This thesis presents the development and application of a numerical method that associates the Ranki...
In this thesis, a numerical program has been developed to simulate the wave-induced ship motions in...
Finite water depth effect for wave-body problems are studied by continuous Rankine source method and...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Hydrodynamic interaction continues to be a major contributory factor in marine casualties and hazard...
The main objective of this paper is to investigate theoretically and numerically how much interactio...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
The hydrodynamic interaction between two ships with side-by-side arrangement is analyzed by using 3-...
Hydrodynamic coefficients, Forces / Moments and Motions of a ship moving with a mean forward speed i...
3-D Rankine source method is used to investigate the hydrodynamic interactions between two ships arr...
In this paper, the added wave resistance of an Ultra Large Container Ship (ULCS) in shallow water is...
The present study introduces the analysis of nonlinear ship motion responses and structural loads in...
In this study, a time domain higher-order Rankine panel method is developed and applied to evaluate ...
In this paper, a boundary element programme MHydro, which is based on 3-D Rankine source method, was...
Present investigation is based on a numerical study using a time-domain Rankine panel method. The ef...
This thesis presents the development and application of a numerical method that associates the Ranki...
In this thesis, a numerical program has been developed to simulate the wave-induced ship motions in...
Finite water depth effect for wave-body problems are studied by continuous Rankine source method and...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Hydrodynamic interaction continues to be a major contributory factor in marine casualties and hazard...
The main objective of this paper is to investigate theoretically and numerically how much interactio...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
The hydrodynamic interaction between two ships with side-by-side arrangement is analyzed by using 3-...
Hydrodynamic coefficients, Forces / Moments and Motions of a ship moving with a mean forward speed i...
3-D Rankine source method is used to investigate the hydrodynamic interactions between two ships arr...
In this paper, the added wave resistance of an Ultra Large Container Ship (ULCS) in shallow water is...
The present study introduces the analysis of nonlinear ship motion responses and structural loads in...