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CFD based form factor determination method

Korkmaz, Kadir Burak (författare)
RISE,Maritima avdelningen,Chalmers University of Technology, Sweden,SSPA,Chalmers tekniska högskola,SSPA Sweden AB
Werner, Sofia (författare)
RISE,Maritima avdelningen,SSPA,SSPA Sweden AB
Sakamoto, Nobuaki (författare)
National Maritime Research Institute, Japan
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Queutey, Patrick (författare)
Ecole Centrale de Nantes, France,Laboratoire de Recherche en Hydrodynamique, Energetique et Environnement Atmospherique
Deng, Ganbo (författare)
Ecole Centrale de Nantes, France,Laboratoire de Recherche en Hydrodynamique, Energetique et Environnement Atmospherique
Yuling, Gao (författare)
Shanghai Ship and Shipping Research Institute, China
Guoxiang, Dong (författare)
Shanghai Ship and Shipping Research Institute, China
Maki, Kevin (författare)
University of Michigan, USA
Ye, Hauxian (författare)
University of Michigan, USA
Akinturk, Ayhan (författare)
Ocean Coastal and River Engineering, Canada,National Research Council Canada
Sayeed, Tanvir (författare)
Ocean Coastal and River Engineering, Canada,National Research Council Canada
Hino, Takanori (författare)
Yokohama National University, Japan
Zhao, Feng (författare)
China Ship Scientific Research Centre, China,China Ship Scientific Research Centre (CSSRC)
Tezdogan, Tahsin (författare)
University of Strathclyde, UK
Demirel, Yigit (författare)
University of Strathclyde, UK
Bensow, Rickard, 1972 (författare)
Chalmers University of Technology, Sweden,Chalmers tekniska högskola
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 (creator_code:org_t)
Elsevier Ltd, 2021
2021
Engelska.
Ingår i: Ocean Engineering. - : Elsevier Ltd. - 0029-8018 .- 1873-5258. ; 220
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The 1978 ITTC Power Prediction method is used to predict the propulsive power of ships through towing tank testing. The form factor approach and its determination in this method have been questioned. This paper investigates the possibility to improve the power predictions by introducing Combined CFD/EFD Method where the experimental determination of form factor is replaced by double body RANS computations applied for open cases KVLCC2 and KCS, including first-time published towing tank tests of KVLCC2 at ballast condition including an experimental uncertainty analysis specifically derived for the form factor. Computations from nine organisations and seven CFD codes are compared to the experiments. The form factor predictions for both hulls in design loading condition compared well with the experimental results in general. For the KVLCC2 ballast condition, majority of the form factors were under-predicted while staying within the experimental uncertainty. Speed dependency is observed with the application of ITTC57 line but it is reduced with the Katsui line and nearly eliminated by numerical friction lines. Comparison of the full-scale viscous resistance predictions obtained by the extrapolations from model scale and direct full-scale computations show that the Combined CFD/EFD Method show significantly less scatter and may thus be a preferred approach.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Farkostteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Vehicle Engineering (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Rymd- och flygteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Aerospace Engineering (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Teknisk mekanik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Applied Mechanics (hsv//eng)

Nyckelord

CFD
Combined CFD/EFD Methods
Experimental uncertainty analysis
Form factor
Scale effects
Ship resistance
Ballast (railroad track)
Forecasting
Ship model tanks
Ship testing
Tanks (containers)
Uncertainty analysis
Design loadings
Determination methods
Experimental determination
Experimental uncertainty
Form factors
Power predictions
Towing tank test
Viscous resistance
Approximation theory
computational fluid dynamics
hull
scale effect
ship design

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