PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2012

Low-speed jet dynamics and sound radiation

Authors

Violato, Daniele
Rodríguez, Daniel
Jordan, Peter
Scarano, Fulvio
Colonius, Tim
Gervais, Yves

18th AIAA Ceas Aeroacoustics Conference 33rd AIAA Aeroacoustics Conference

1
Citations
7
Authors

Abstract

Experimental velocity measurements of a low-speed jet, performed using time-resolved tomographic PIV, are used to study the dynamics of large-scale structures and their sound radiation. The experimental results show the roll-up of axisymmetric vortices that pair downstream, and subsequently lose their azimuthal coherence. Models of linear instability waves using both steady laminar and mean-field base flows flow are applied. While good agreement can be obtained for the vortex roll-up frequency in the near-nozzle region using the laminar base flow, non-linear effects must be included, via the mean field, in order to capture the downstream evolution of both the fundamental and subharmonic (vortex pairing). The velocity fluctuations for both frequencies have a wave-packet structure with some jitter in the form of modulations of the spatial extent and amplitude of the envelope. The sound radiation is modelled using a jittering wave-packet model, an shows agreement with the exponential directivity shape of Laufer and Yen (J. Fluid Mech. 134, 1983). © 2012 by Peter Jordan.

Aerospace Engineering (ENGI) Mechanical Engineering (ENGI) Acoustics and Ultrasonics (PHYS)
: Scopus
Last Update: 2026-06-25
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