Research into the effects of hull roughness on ship resistance and propulsion is well established, however, the effect of heterogeneous hull roughness is not yet fully understood. In this study, Computational Fluid Dynamics (CFD) simulations were conducted to investigate the effect of heterogeneous hull roughness on ship resistance. The Wigley hull was modelled with various hull conditions, including homogeneous and heterogeneous hull conditions. The results were compared against existing experimental data and showed a good agreement, suggesting that the CFD approach is valid for predicting the effect of heterogeneous hull roughness on ship resistance. Furthermore, the local distributions of the wall shear stress and roughness Reynolds numb...
Hull biofouling is a well-known problem for the shipping industry, leading to increased resistance a...
In recent years, the IMO has introduced new regulations to reduce the negative impact of ships on th...
The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directl...
Hull roughness significantly increases ship resistance, power, and fuel consumption. Although it is ...
There has been an increasing attention to the effect of hull roughness on ship resistance and poweri...
Recently, there have been active efforts to investigate the effect of hull roughness on ship resista...
There is a large body of research available focusing on how ship hull conditions, including various ...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
Shallow waters influence the behaviour and performance of a vessel by modifying the local pressure d...
Surface roughness can reduce the performance of a system of fluid mechanics due to an increase in fr...
This paper deals with several aspects of surface roughness modelling in RANS codes applied to full-s...
Hull roughness increases ship frictional resistance and, thus, results in economic and environmental...
Hull biofouling is a well-known problem for the shipping industry, leading to increased resistance a...
In recent years, the IMO has introduced new regulations to reduce the negative impact of ships on th...
The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directl...
Hull roughness significantly increases ship resistance, power, and fuel consumption. Although it is ...
There has been an increasing attention to the effect of hull roughness on ship resistance and poweri...
Recently, there have been active efforts to investigate the effect of hull roughness on ship resista...
There is a large body of research available focusing on how ship hull conditions, including various ...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
Shallow waters influence the behaviour and performance of a vessel by modifying the local pressure d...
Surface roughness can reduce the performance of a system of fluid mechanics due to an increase in fr...
This paper deals with several aspects of surface roughness modelling in RANS codes applied to full-s...
Hull roughness increases ship frictional resistance and, thus, results in economic and environmental...
Hull biofouling is a well-known problem for the shipping industry, leading to increased resistance a...
In recent years, the IMO has introduced new regulations to reduce the negative impact of ships on th...
The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directl...