Published July 26, 2013 | Version public
Conference Paper

Inviscid stability of bubbly jets

Abstract

This paper investigates the effects of bubble dynamics on the stability of bubbly and cavitating jets of low void fraction. The equations of motion for the bubbly mixture are linearized for small perturbations and the parallel flow assumption is used to obtain a modified Rayleigh equation governing the inviscid stability of a two-dimensional jet. Inertial effects associated with the bubble response and energy dissipation due to the viscosity of the liquid, the heat transfer between the two phases, and the liquid compressibility are included. Numerical solutions of the eigenvalue problem for the modified Rayleigh equation of a Bickley jet are obtained by a multiple shooting method. Depending on the jet velocity, the void fraction, and the ambient pressure, the presence of air bubbles can induce significant departures from the classical results for a single phase fluid.

Additional Information

© 1995 AIAA. The authors gratefully acknowledge the support of the Office of Naval Research under grant number N-00014-91-K-1295 and of the Italian Ministry of University and Scientific Research.

Additional details

Identifiers

Eprint ID
39601
Resolver ID
CaltechAUTHORS:20130725-165119685

Funding

Office of Naval Research (ONR)
N-00014-91-K-1295
Italian Ministry of University and Scientific Research

Dates

Created
2013-07-26
Created from EPrint's datestamp field
Updated
2021-11-09
Created from EPrint's last_modified field

Caltech Custom Metadata

Other Numbering System Name
AIAA Paper
Other Numbering System Identifier
95-2377