This study’s main objective is to investigate the scale effect on the benchmark DARPA Suboff submarine hull form’s resistance and self-propulsion characteristics. The study’s secondary objective is to explore the feasibility of the 1978 ITTC performance prediction method for submarines’ power prediction. In achieving both objectives, the CFD solver is utilised. Hence, the flow around the three different scales of the DARPA submarine forms and its propellers, including a full-scale one, is first solved using the steady RANS method with the k-ω SST turbulence model. Verification studies are conducted to determine the uncertainty level of the numerical computations for each scale. The hull resistance, propeller open water and self-propulsion p...
A blade element momentum theory propeller model is coupled with a commercial RANS solver. This allow...
A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Ini...
This study uses Computational Fluid Dynamics (CFD) to investigate the forces and moments acting on a...
This study’s main objective is to investigate the scale effect on the benchmark DARPA Suboff submari...
The motivation of this study is to present the scale effects on the propulsion performance of Jouber...
In this study, we use computational fluid dynamics (CFD) to investigate the self-propulsion characte...
Hydrodynamic performance prediction of a propeller working behind a submerged body is a popular rese...
Estimation of ship self-propulsion is important for the selection of the propulsion system and the m...
Estimation of ship self-propulsion is important for the selection of the propulsion system and the m...
The aim of this study is to investigate the impact of barnacle type biofouling roughness on the full...
The self-propulsion test of underwater vehicles is the key technique for predicting and evaluating t...
Achieving a reliable and accurate numerical prediction of the self-propulsion performance of a ship ...
URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Initi...
Abstract –This work reports the flow analysis in the hull-stern region and the hull-propeller intera...
In this paper, hull/propeller interaction of a submarine model which has a realistic geometry, in su...
A blade element momentum theory propeller model is coupled with a commercial RANS solver. This allow...
A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Ini...
This study uses Computational Fluid Dynamics (CFD) to investigate the forces and moments acting on a...
This study’s main objective is to investigate the scale effect on the benchmark DARPA Suboff submari...
The motivation of this study is to present the scale effects on the propulsion performance of Jouber...
In this study, we use computational fluid dynamics (CFD) to investigate the self-propulsion characte...
Hydrodynamic performance prediction of a propeller working behind a submerged body is a popular rese...
Estimation of ship self-propulsion is important for the selection of the propulsion system and the m...
Estimation of ship self-propulsion is important for the selection of the propulsion system and the m...
The aim of this study is to investigate the impact of barnacle type biofouling roughness on the full...
The self-propulsion test of underwater vehicles is the key technique for predicting and evaluating t...
Achieving a reliable and accurate numerical prediction of the self-propulsion performance of a ship ...
URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Initi...
Abstract –This work reports the flow analysis in the hull-stern region and the hull-propeller intera...
In this paper, hull/propeller interaction of a submarine model which has a realistic geometry, in su...
A blade element momentum theory propeller model is coupled with a commercial RANS solver. This allow...
A URANS CFD-based study has been undertaken to investigate scale effect in container ship squat. Ini...
This study uses Computational Fluid Dynamics (CFD) to investigate the forces and moments acting on a...