A numerical study on the shedding frequency of sheet cavitation

Themis Melissaris, Norbert Bulten, Tom Van Terwisga

Research output: Chapter in Book/Conference proceedings/Edited volumeConference contributionScientificpeer-review

2 Citations (Scopus)

Abstract

The last decades there is a strong interest in predicting cavitation dynamics as it is a prerequisite in order to predict cavitation erosion. Industrial applications require accurate results in an acceptable time span and as a result there is a focus on large scale dynamics. In this paper the RANS equations are used to investigate the shedding frequency of sheet cavities in two-dimensional simulations. First a verification study is made for the NAC A 0015 in 6 degrees angle of incidence. A grid sensitivity study is conducted in wetted flow and in steady (non-shedding) cavitating condition (σ=1.6). Then an investigation is conducted in order to capture the shedding frequency. The results show that only when a correction for turbulent viscosity at the cavity-water interface is used it was possible to capture the shedding frequency as found in other numerical studies. Furthermore, a validation study is conducted on a NACA66-312 α=0.8 for two different angles of attack. The obtained results are compared and validated with the experimental data from Leroux et al. They indicate that the 2D shedding frequency predicted by the numerical simulations is in good agreement with the frequency obtained in the experiment.

Original languageEnglish
Title of host publicationProceedings of the 7th International Conference on Computational Methods in Marine Engineering (MARINE 2017)
EditorsP. Queutey, D. Le Touze, M. Visonneau
PublisherInternational Center for Numerical Methods in Engineering
Pages801-812
ISBN (Electronic)978-849469098-3
Publication statusPublished - 2017
EventMARINE 2017: 7th International Conference on Computational Methods in Marine Engineering - Nantes, France
Duration: 15 May 201717 May 2017

Conference

ConferenceMARINE 2017: 7th International Conference on Computational Methods in Marine Engineering
Country/TerritoryFrance
CityNantes
Period15/05/1717/05/17

Keywords

  • Cavitation
  • CFD
  • Hydrofoil
  • Shedding frequency
  • Turbulent viscosity

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