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The influence of numerical parameters in the finite-volume method on the Wigley hull resistance (CROSBI ID 259603)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Andrun, Martina ; Blagojević, Branko ; Bašić, Josip The influence of numerical parameters in the finite-volume method on the Wigley hull resistance // Proceedings of the Institution of Mechanical Engineers Part M-Journal of Engineering for the Maritime Environment, 233 (2018), 4; 1123-1132. doi: 10.1177/1475090218812956

Podaci o odgovornosti

Andrun, Martina ; Blagojević, Branko ; Bašić, Josip

engleski

The influence of numerical parameters in the finite-volume method on the Wigley hull resistance

The equations discretization errors are often overlooked compared to the spatial discretization errors. This article presents the results of the influence of various equations discretization schemes in computational fluid dynamics on the prediction of the ship resistance and wave elevation on the hull. For the analysis, steady flow around a model of the Wigley hull is numerically predicted by employing a finite-volume method solver based on Reynolds-averaged Navier– Stokes equations and the volume-of-fluid method. Six momentum discretization schemes, three multi- fluid discretization schemes and three gradient schemes, are used in the analysis. The results show that the choice of discretization schemes has a significant influence on the results of wave elevation and resistance force in the case of the flow around the Wigley hull. In conclusion, second-order discretization schemes should be used for the resistance evaluation, in order to properly capture the non-linear effects.

Computational fluid dynamics ; finite-volume method ; volume of fluid ; ship resistance ; Wigley hull

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Podaci o izdanju

233 (4)

2018.

1123-1132

objavljeno

1475-0902

2041-3084

10.1177/1475090218812956

Povezanost rada

Brodogradnja, Interdisciplinarne tehničke znanosti

Poveznice
Indeksiranost