A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Initially, CFD studies were carried out for the model scale benchmarking squat cases of a self-propelled DTC container ship. Propulsion of the vessel was modelled by the body-force actuator disc method. Full scale investigations were then undertaken. Validation of the full scale set-up was demonstrated by computing the full scale bare hull resistance in deep, laterally unrestricted water and comparing against the extrapolated resistance of model scale benchmark resistance data. Upon validating the setup, it was used to predict full scale ship squat in confined waters. The credibility of the full scale confined water model was checked by comparin...
Ship motions in open waters and waves are always dynamic and most of the time are nonlinear. Even th...
Accurate prediction of hydrodynamic forces opposing a ship displacement in restricted waterways is ...
This paper presents a comparison of towing tank testing, ship scale computational fluid dynamics...
A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Ini...
URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Initi...
The size of container ships has increased significantly over the past decades as shipping companies ...
Various URANS modelling techniques to predict container ship squat in confined water are investigate...
A numerical investigation has been undertaken to study the impact of varying a container ship's prin...
The demand to increase port throughput has driven container ships to travel relatively fast in shall...
As a ship approaches shallow water, a number of changes arise owing to the hydrodynamic interaction ...
This study investigates lateral restriction effects on squat based on a novel approach to calculate ...
This thesis reports on an investigation into the simulation of ship manoeuvring in restricted waters...
One of the phenomena restricting the tanker navigation in shallow waters is reduction of under keel ...
Squat is an important issue for ships navigating with limited under keel clearance in restricted wat...
Ship motions in open waters and waves are always dynamic and most of the time are nonlinear. Even th...
Accurate prediction of hydrodynamic forces opposing a ship displacement in restricted waterways is ...
This paper presents a comparison of towing tank testing, ship scale computational fluid dynamics...
A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Ini...
URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Initi...
The size of container ships has increased significantly over the past decades as shipping companies ...
Various URANS modelling techniques to predict container ship squat in confined water are investigate...
A numerical investigation has been undertaken to study the impact of varying a container ship's prin...
The demand to increase port throughput has driven container ships to travel relatively fast in shall...
As a ship approaches shallow water, a number of changes arise owing to the hydrodynamic interaction ...
This study investigates lateral restriction effects on squat based on a novel approach to calculate ...
This thesis reports on an investigation into the simulation of ship manoeuvring in restricted waters...
One of the phenomena restricting the tanker navigation in shallow waters is reduction of under keel ...
Squat is an important issue for ships navigating with limited under keel clearance in restricted wat...
Ship motions in open waters and waves are always dynamic and most of the time are nonlinear. Even th...
Accurate prediction of hydrodynamic forces opposing a ship displacement in restricted waterways is ...
This paper presents a comparison of towing tank testing, ship scale computational fluid dynamics...