Investigation of the Impact of Surface Roughness, on a Ship’s Drag (Hull Resistance)
Ali, Zainab
Bognár, Gabriella
2025-09-16T11:10:32Z
2025-09-16T11:10:32Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33728
Recently, there has been an increasing focus on maritime transport, as it offers
many advantages in terms of storage and transport. As a result, shipping companies need to
reduce the fuel consumption of their vessels. These companies have tried to define methods
of operation and maintenance in order to reduce greenhouse gas emissions and also to
reduce operating costs, thus increasing company profits. One important parameter that
directly affects speed, power requirements, and fuel consumption is the hull resistance.
Computational Fluid Dynamics (CFD) can be used to calculate the resistance of a rough
surface using special wall functions that take into account the effect of roughness on the
boundary layer near the hull. These results can be compared with those of a smooth surface.
In addition to the effect of surface roughness on hull resistance to pressure, this method also
allows the combination of roughness and non-linear effects such as the spatial distribution
of contaminants, the movement of the ship in waves, and the effect of thrust on hull resistance.
Accordingly, the aim of this research is to determine the effect of surface roughness on the
ship resistance for different values of roughness height, boundary layer, and values of
velocity, pressure, and kinetic energy fields for the KVLCC2 model hull by CFD using the
RANS equations and the k-ω SST model. A numerical study was performed to determine how
surface roughness affects the velocity field and kinetic energy.
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Investigation of the Impact of Surface Roughness, on a Ship’s Drag (Hull Resistance)
hu_HU
Open access
hu_HU
Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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