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PMID: 39830621 Published · epublish English Journal Article

Experimental dataset of a model-scale ship in calm water and waves.

Data in brief ·Vol. 58 ·2025-02-00 ·页码 111257

Hosseinzadeh S, Turnock S, Lee H, Olvera R

Abstract

This article presents data derived from a series of experiments conducted on a scaled model ship, examining its performance in both calm water and regular waves. The acquisition of high-quality experimental data is essential for refining Computational Fluid Dynamics (CFD) simulations and modifying analytical methods to evaluate the powering performance of ships. Despite notable advancements in numerical models, there exists a corresponding imperative to elevate the precision of measurements and insights obtained from towing tank tests. Accordingly, a self-propelled model-scale of the KRISO Container Ship (KCS) hull is used to assess hydrodynamic performance of ships and investigate the interaction between the hull, propeller, and rudder. A set of captive model tests is carried out on the single-screw KCS model in the University of Southampton's Boldrewood towing tank. The model-scale experiments are conducted in an offloaded propeller condition at ship's design speed, which is characterised by a specific Froude number of 0.26. Various test configurations are explored, encompassing four rudder angles, five leeway angles, two wave conditions, and two propeller speeds. Throughout the experiments, multiple parameters were recorded, including the wave environment, ship motions, hull forces and moments, propeller thrust and torque, as well as rudder forces and moments. Initial analysis of the data involved comparing the calm water resistance results with previously published experimental data, revealing a favourable agreement. Additionally, video footage captured from two different angles during various runs serves as illustrative samples of the experimental procedures. This comprehensive series of experiments offers a benchmark for future research endeavours, providing a foundation for refining subsequent experiments, validating numerical methods, and enhancing mathematical models.

Keywords
Calm water Hull-propeller-rudder interaction Model-scale experiments Regular waves Ship hydrodynamics Ship propulsion
作者与单位
共 4 位作者,点击展开单位 / ORCID
Hosseinzadeh Saeed
Maritime Engineering Research Group, School of Engineering, University of Southampton, SO16 7QF UK.
Turnock Stephen
Maritime Engineering Research Group, School of Engineering, University of Southampton, SO16 7QF UK.
Lee Haesol
Maritime Engineering Research Group, School of Engineering, University of Southampton, SO16 7QF UK.
Olvera Rodolfo
Maritime Engineering Research Group, School of Engineering, University of Southampton, SO16 7QF UK.
Article Info
Journal
Data in brief
Abbr.
Data Brief
ISSN
2352-3409
Published
2025-02-00
电子出版
2024-00-24
页码
111257
Language
English
Country/Region
Netherlands
NLM ID
101654995
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