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Multiphase Flow Simulation of ITTC Standard Cavitator for Underwater Radiated Noise Prediction

Year of publication

2023

Authors

Hynninen, Antti; Viitanen, Ville; Tanttari, Jukka; Klose, Rhena; Testa, Claudio; Martio, Jussi

Abstract

This work focuses on the main issues related to noise measurements in cavitation tunnels. The scope of the paper is to twofold: to obtain a better understanding on the main phenomena underlying experiments and to define consistent cavitation tunnel measurement corrections for background noise, wall reflections, and distance normalisation. To this aim, the acoustic field generated by the ITTC standard cavitator model inside a cavitation tunnel is predicted by Lighthill’s acoustic analogy and solved through a finite element method that inherently accounts for the presence of the walls. Sources of sound detection relies on two multiphase CFD solvers, namely, the homogeneous mixture model—Volume of Fluid method and the Euler–Euler formulations. Starting from the computation of the sound pressure level in the free field with the assumption of spherical spreading without absorption, corrections from losses and spreading are detected by the above approach. Background-corrected sound pressure levels are identified and then compared with the source levels measured in the cavitation tunnel of the Potsdam Model Basin (SVA). It is found that free-field computations corrected by tunnel-induced effects match well with experiments up to 100 Hz (in the one-third octave band), whereas relevant discrepancies arise out of this range that need further investigations.
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Organizations and authors

VTT Technical Research Centre of Finland Ltd

Hynninen Antti Orcid -palvelun logo

Tanttari Jukka Orcid -palvelun logo

Martio Jussi Orcid -palvelun logo

Viitanen Ville Orcid -palvelun logo

Publication type

Publication format

Article

Parent publication type

Journal

Article type

Original article

Audience

Scientific

Peer-reviewed

Peer-Reviewed

MINEDU's publication type classification code

A1 Journal article (refereed), original research

Publication channel information

Volume

11

Issue

4

Article number

820

​Publication forum

85032

​Publication forum level

1

Open access

Open access in the publisher’s service

Yes

Open access of publication channel

Fully open publication channel

License of the publisher’s version

CC BY

Self-archived

No

Article processing fee (EUR)

1109

Year of payment for the open publication fee

2023

Other information

Fields of science

Environmental engineering

Keywords

[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]

Language

English

International co-publication

Yes

Co-publication with a company

No

DOI

10.3390/jmse11040820

The publication is included in the Ministry of Education and Culture’s Publication data collection

Yes