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Numerical prediction of tip vortex cavitation noise of underwater propellers using RANS solver, bubble dynamics and acoustic analogy

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dc.contributor.author구가람-
dc.contributor.author정철웅-
dc.contributor.author설한신-
dc.contributor.author박일룡-
dc.date.accessioned2021-12-08T07:42:16Z-
dc.date.available2021-12-08T07:42:16Z-
dc.date.issued20200824-
dc.identifier.urihttps://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/2345-
dc.description.abstractIn this study, tip vortex cavitation noise of underwater propeller is predicted using a one-way coupled method consisting of RANS solvers, bubble dynamics model, and the acoustic analogy. First, the hydrodynamic flow field around the underwater propeller is predicted by using the RANS solver. The tip-vortex structure is reconstructed by applying the vortex model in association with the flow field obtained from the RANS solver because the tip vortex suffers from being dissipated by the numerical damping intrinsic to the numerical scheme. Before the vortex model is applied, the vortex core location is identified using the minimum criterion. The magnitude of the modeled vortex is determined by using the circulation of the local flow field around the identified vortex core near the tip of the propeller blades. Then, the bubble dynamics model is employed to predict tip-vortex cavitation. The initial nuclei distribution is adjusted to represent the quality of water used in the corresponding experiment. The Keller Herring and the bubble trajectory equations are solved to predict the volume and the location of each nucleus in the hydrodynamic flow field, respectively. Finally, cavitation noise is predicted by considering each nucleus as a point monopole source. The propeller, named HSP17, is newly designed and manufactured to provide benchmarking data, especially for the effects of the skew angles on the tip-vortex cavitat-
dc.language영어-
dc.language.isoENG-
dc.titleNumerical prediction of tip vortex cavitation noise of underwater propellers using RANS solver, bubble dynamics and acoustic analogy-
dc.title.alternativeNumerical prediction of tip vortex cavitation noise of underwater propellers using RANS solver, bubble dynamics and acoustic analogy-
dc.typeConference-
dc.citation.titleProceedings of 2020 International Congress on Noise Control-
dc.citation.volume1-
dc.citation.number1-
dc.citation.startPage1-
dc.citation.endPage6-
dc.citation.conferenceNameProceedings of 2020 International Congress on Noise Control-
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지능형선박연구본부 (함정공학연구센터)
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