Depending on the amount of data to process, file generation may take longer.

If it takes too long to generate, you can limit the data by, for example, reducing the range of years.

Article

Download file Download BibTeX

Title

Noise Emission From Various Shape Rods at Low-moderate Reynolds Number

Authors

Year of publication

2021

Published in

Vibrations in Physical Systems

Journal year: 2021 | Journal volume: vol. 32 | Journal number: no. 2

Article type

scientific article

Publication language

english

Keywords
EN
  • noise
  • circular square rods
  • u-shape beam
  • sound pressure level
Abstract

EN Aeroacoustic source localization is an important experimental tool and the first step to know the mechanism of noise generation. The flow around the various shape of rods is one of the major aeroacoustic noise source mechanism. Such rods represent simple models for technical applications like part of the landing gear of planes, train pantographs, antennas, vehicles part, ventilation system or bridge. The purpose of this paper is to clarify the influence of the rod shape in the noise generation mechanism in a low-moderate Reynolds number. In this work, the situation when various shape rods are in the area of laminar-turbulent flow was analyzed. The measurements were carried out for single circular, square, c-shape rods to study the noise effect depended on the Reynolds number. The measurements were performed on the specially constructed test stand with the outlet to the anechoic room. The 1/3 SPL differential spectrum as 2-D noise maps were obtained for studied rods. The acoustic differences between circular, square and U-beam rods were observed.

Pages (from - to)

2021202-1 - 2021202-8

DOI

10.21008/j.0860-6897.2021.2.02

URL

https://vibsys.put.poznan.pl/_journal/2021-32-2/articles/vps_2021202.pdf

Comments

article number: 2021202

License type

CC BY (attribution alone)

Full text of article

Download file

Access level to full text

public

Ministry points / journal

70

Ministry points / journal in years 2017-2021

70

This website uses cookies to remember the authenticated session of the user. For more information, read about Cookies and Privacy Policy.