Exploring the effects of speed and scale on a ship's form factor using CFD
Exploring the effects of speed and scale on a ship's form factor using CFD
The problem of predicting a ship's form factor and associated scale effects has been subject to many investigations in recent years. In this study, an attempt is made to investigate whether the form factor is influenced by a change in the ship's speed by numerically modelling a geosim series of the KCS hull form by means of a RANS solver. The turbulence dependence of the problem is also studied by altering the closure model among three widely used approaches (the k-ω, k-ω SST, and k-ε models). The results show that at very low speeds (Froude numbers in the range of 0.02–0.06) the numerical model predicts changes in the form factor of a ship between 10% and 20%, depending on the turbulence model and scale factor choices. As the speed is increased further, the form factor exhibits little change, usually in the range of 1% or less. Simulations where the Reynolds number is changed by approximately two orders of magnitude, achieved by altering the value of viscosity, confirmed that the form factor can be considered Froude-dependent only for low speeds, predicting essentially identical values when high speed cases are considered.
147-162
Terziev, Momchil
938f71d0-02b5-414c-8c2d-9cca8cc87397
Tezdogan, Tahsin
7e7328e2-4185-4052-8e9a-53fd81c98909
Demirel, Yigit Kemal
44a59a7c-8ba9-481d-be96-d50c46fbdf34
Villa, Diego
45bd3b85-46f5-489c-a8ac-4fa93a7b0c8d
Mizzi, Simon
1deca98f-ad1b-4409-a961-47b8debdf91a
Incecik, Atilla
25a12ee2-7ba6-47cf-af5d-a79de4c6a2c4
30 November 2021
Terziev, Momchil
938f71d0-02b5-414c-8c2d-9cca8cc87397
Tezdogan, Tahsin
7e7328e2-4185-4052-8e9a-53fd81c98909
Demirel, Yigit Kemal
44a59a7c-8ba9-481d-be96-d50c46fbdf34
Villa, Diego
45bd3b85-46f5-489c-a8ac-4fa93a7b0c8d
Mizzi, Simon
1deca98f-ad1b-4409-a961-47b8debdf91a
Incecik, Atilla
25a12ee2-7ba6-47cf-af5d-a79de4c6a2c4
Terziev, Momchil, Tezdogan, Tahsin, Demirel, Yigit Kemal, Villa, Diego, Mizzi, Simon and Incecik, Atilla
(2021)
Exploring the effects of speed and scale on a ship's form factor using CFD.
International Journal of Naval Architecture and Ocean Engineering, 13, .
(doi:10.1016/j.ijnaoe.2020.12.002).
Abstract
The problem of predicting a ship's form factor and associated scale effects has been subject to many investigations in recent years. In this study, an attempt is made to investigate whether the form factor is influenced by a change in the ship's speed by numerically modelling a geosim series of the KCS hull form by means of a RANS solver. The turbulence dependence of the problem is also studied by altering the closure model among three widely used approaches (the k-ω, k-ω SST, and k-ε models). The results show that at very low speeds (Froude numbers in the range of 0.02–0.06) the numerical model predicts changes in the form factor of a ship between 10% and 20%, depending on the turbulence model and scale factor choices. As the speed is increased further, the form factor exhibits little change, usually in the range of 1% or less. Simulations where the Reynolds number is changed by approximately two orders of magnitude, achieved by altering the value of viscosity, confirmed that the form factor can be considered Froude-dependent only for low speeds, predicting essentially identical values when high speed cases are considered.
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Accepted/In Press date: 7 December 0202
e-pub ahead of print date: 17 March 2021
Published date: 30 November 2021
Identifiers
Local EPrints ID: 473840
URI: http://eprints.soton.ac.uk/id/eprint/473840
ISSN: 2092-6782
PURE UUID: 8e562d51-b362-416b-94ed-205a59fac03e
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Date deposited: 01 Feb 2023 17:42
Last modified: 17 Mar 2024 04:18
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Author:
Momchil Terziev
Author:
Tahsin Tezdogan
Author:
Yigit Kemal Demirel
Author:
Diego Villa
Author:
Simon Mizzi
Author:
Atilla Incecik
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