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Grid Type and Turbulence Model Influence on Propeller Characteristics Prediction (CROSBI ID 270383)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Sikirica, Ante ; Čarija, Zoran ; Kranjčević, Lado ; Lučin, Ivana Grid Type and Turbulence Model Influence on Propeller Characteristics Prediction // Journal of marine science and engineering, 7 (2019), 10; 374, 18. doi: 10.3390/jmse7100374

Podaci o odgovornosti

Sikirica, Ante ; Čarija, Zoran ; Kranjčević, Lado ; Lučin, Ivana

engleski

Grid Type and Turbulence Model Influence on Propeller Characteristics Prediction

This paper evaluates the applicability of the hexahedral block structured grids for marine propeller performance predictions. Hydrodynamic characteristics for Potsdam Propeller Test Case (PPTC), namely thrust and torque coefficients, were determined using numerical simulations in two commercial solvers: Ansys Fluent and STAR-CCM+. Results were attained for hexahedral and tetrahedral hybrid grids equivalent in terms of cell count and quality, and compared to the experimental results. Furthermore, accuracy of Realizable k-ϵ and SST k-ω turbulent models when analyzing marine propeller performance was investigated. Finally, performance characteristics were assessed in cavitating flow conditions for a single advance ratio using Zwart–Gerber–Belamri and Schnerr and Sauer models. The resulting cavitation pattern was compared to cavity extents and shape noted during measurements. The results suggest that hexa and hybrid grids, in certain range of advance ratios, do provide similar results ; however, for low and high ratios, structured grids in conjunction with Realizable k-ϵ model can achieve more accurate results.

open water ; cavitation ; structured grid ; PPTC

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Podaci o izdanju

7 (10)

2019.

374

18

objavljeno

2077-1312

10.3390/jmse7100374

Povezanost rada

Strojarstvo, Temeljne tehničke znanosti

Poveznice
Indeksiranost