The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directly affected by the roughness of the hull׳s surface. Increased hull roughness leads to increased frictional resistance, causing higher fuel consumption and CO2 emissions. It would therefore be very beneficial to be able to accurately predict the effects of roughness on resistance. This paper proposes a Computational Fluid Dynamics (CFD) model which enables the prediction of the effect of antifouling coatings on frictional resistance. It also outlines details of CFD simulations of resistance tests on coated plates in a towing tank. Initially, roughness functions and roughness Reynolds numbers for several antifouling coatings were evaluated using...
An extensive series of towing tests using flat plates covered with artificial barnacles were carried...
There is a large body of research available focusing on how ship hull conditions, including various ...
There are limited scientific data on contributors to the added drag of in-service ships, represented...
The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directl...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
Recently, there have been active efforts to investigate the effect of hull roughness on ship resista...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
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...
Owing to the increased sea transportation of goods, the environmental impacts of this activity are b...
This paper aims to present a CFD approach to predict the resistance as a function of surface roughne...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
Hull roughness increases ship resistance, power, and fuel consumption significantly. Recent studies ...
AbstractAn extensive series of towing tests using flat plates covered with artificial barnacles were...
An extensive series of towing tests using flat plates covered with artificial barnacles were carried...
There is a large body of research available focusing on how ship hull conditions, including various ...
There are limited scientific data on contributors to the added drag of in-service ships, represented...
The fuel consumption of a ship is strongly influenced by her frictional resistance, which is directl...
This paper proposes a Computational Fluid Dynamics (CFD) based unsteady RANS model which enables the...
To reduce the fuel consumption and green-house gas emissions of ships, it is necessary to understand...
Recently, there have been active efforts to investigate the effect of hull roughness on ship resista...
An awareness of the drag increase brought on by biofouling\u27s roughness on the ship hull is one te...
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...
Owing to the increased sea transportation of goods, the environmental impacts of this activity are b...
This paper aims to present a CFD approach to predict the resistance as a function of surface roughne...
The consequences of poor hull surface conditions on fuel consumption and emissions are well-known. H...
Hull roughness increases ship resistance, power, and fuel consumption significantly. Recent studies ...
AbstractAn extensive series of towing tests using flat plates covered with artificial barnacles were...
An extensive series of towing tests using flat plates covered with artificial barnacles were carried...
There is a large body of research available focusing on how ship hull conditions, including various ...
There are limited scientific data on contributors to the added drag of in-service ships, represented...