Numerical Investigation of Length to Beam Ratio Effects on Ship Resistance Using Ranse Method

Author:

Le Tat-Hien1ORCID,Anh Nguyen Duy2ORCID,Tu Tran Ngoc3,Hoa Nguyen Thi Ngoc4,Ngoc Vu Minh5

Affiliation:

1. 1 Ho Chi Minh City University of Technology (HCMUT) , Vietnam

2. 2 Vietnam National University Ho Chi Minh City , Vietnam

3. 3 Vietnam Maritime University , VietNam

4. 4 Ho Chi Minh City University of Transport , Vietnam

5. 5 Vietnam Maritime University , VietNam

Abstract

Abstract The paper discusses the length to beam (L/B) ratio effects on ship resistance at three different Froude numbers using unsteady RANSE simulation. First, the JBC ship model was used as an initial hull form for verification and validation of predicted ship resistance results with measured data, and then the influence of the L/B ratio on ship resistance was carried out. Ship hull forms with different L/B ratios were produced from the initial one by using the Lackenby method. The numerical results obtained show the L/B ratio’s effect on ship resistance. Increases of the L/B ratio led to gradual reduction of the total ship resistance and vice versa. Analysis of the changing of the resistance components indicates that the pressure resistance changes are considerably larger than the frictional one. Finally, the paper analyses the difference in the flow field around the hull of the ship with variation of the L/B ratio to fully understand the physical phenomenon in the change of ship resistance at different L/B parameters.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Ocean Engineering

Reference29 articles.

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2. O. Kanifolskyi, ‘General Strength, Energy Efficiency (EEDI), and Energy Wave Criterion (EWC) of Deadrise Hulls for Transitional Mode,’ Polish Maritime Research, vol. 29, no. 3, pp. 4-10, 2022. https://doi.org/10.2478/pomr-2022-0021

3. A. A. Banawan, and Y. M. Ahmed, ‘Use of computational fluid dynamics for the calculation of ship resistance, and its variation with the ship hull form parameters,’ Alexandria Engineering Journal, vol. 45, no. 1, pp. 47-56, 2006

4. M. Kraskowski, ‘CFD Optimisation of the Longitudinal Volume Distribution of a Ship’s Hull by Constrained Transformation of the Sectional Area Curve,’ Polish Maritime Research, vol. 29, no. 3, pp. 11-20, 2022. https://doi.org/10.2478/pomr-2022-0022

5. D. D. Luu et al., ‘Numerical Study on the Influence of Longitudinal Position of Centre of Buoyancy on Ship Resistance Using RANSE Method,’ Naval Engineers Journal, vol. 132, no. 4, pp. 151-160, 2020.

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