Hull biofouling is a well-known problem for the shipping industry, leading to increased resistance and fuel consumption. Considering that the effects of hull form on resistance are known to be higher for a less slender hull, it is hypothesised in this paper that the effect of biofouling roughness on resistance is also dependent on the hull form. To test this hypothesis, previously reported full-scale numerical results on a containership are re-analysed. Form effects on roughness penalties, corresponding to KΔCT = 0.058 \ub1 0.025, are observed at a low speed (19 knots, Res = 2.29 7 109), which are however cancelled out by traditionally neglected roughness effects on wave-making resistance at a higher speed (24 knots, Res = 2.89 7 109). It...
Increasing pressure is being placed on the marine industry to address ship emissions, regulations to...
There are limited scientific data on contributors to the added drag of in-service ships, represented...
Hull roughness significantly increases ship resistance, power, and fuel consumption. Although it is ...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
An extensive series of towing tests using flat plates covered with artificial barnacles were carried...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
AbstractAn extensive series of towing tests using flat plates covered with artificial barnacles were...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
The main aim of this paper is to generate practical added resistance diagrams to be used for the pre...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
The aim of this study is to investigate the effect of biofouling related hull roughness on a full-sc...
The negative effect of biofouling on ship resistance has been investigated since the early days of n...
Recently, there has been an increasing interest in predicting the effect of biofouling on ship resis...
As a result of the increasing pressure being placed on the marine industry to address ship emissions...
Biofouling is known as one of the main problems in the maritime sector because it can increase the ...
Increasing pressure is being placed on the marine industry to address ship emissions, regulations to...
There are limited scientific data on contributors to the added drag of in-service ships, represented...
Hull roughness significantly increases ship resistance, power, and fuel consumption. Although it is ...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
An extensive series of towing tests using flat plates covered with artificial barnacles were carried...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
AbstractAn extensive series of towing tests using flat plates covered with artificial barnacles were...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
The main aim of this paper is to generate practical added resistance diagrams to be used for the pre...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
The aim of this study is to investigate the effect of biofouling related hull roughness on a full-sc...
The negative effect of biofouling on ship resistance has been investigated since the early days of n...
Recently, there has been an increasing interest in predicting the effect of biofouling on ship resis...
As a result of the increasing pressure being placed on the marine industry to address ship emissions...
Biofouling is known as one of the main problems in the maritime sector because it can increase the ...
Increasing pressure is being placed on the marine industry to address ship emissions, regulations to...
There are limited scientific data on contributors to the added drag of in-service ships, represented...
Hull roughness significantly increases ship resistance, power, and fuel consumption. Although it is ...