Coaxial gas-liquid jet: Dispersion and dynamics.

Autor: Poplavski, S. V., Boiko, V. M., Lotov, V. V., Nesterov, A. Yu., Fomin
Předmět:
Zdroj: AIP Conference Proceedings; 2018, Vol. 1939 Issue 1, p1-1, 1p, 2 Diagrams, 4 Graphs
Abstrakt: The aim of the work was to study the pneumatic spraying of liquids in a gas jet with reference to the creation of high-flow nozzles. A complex experimental study of a coaxial jet was performed with a central supply of liquid beyond the cutoff of the confusor nozzle at subsonic and supersonic flow conditions. A set of optical methods for flows diagnostics that can function in dense gas-liquid jets provides new data on the structure of the spray: the gas velocity field without liquid, shadow visualization of the geometry and wave structure of the jet with and without fluid, the velocity profiles of the liquid phase, size distribution of the droplets. The key parameters of the liquid breakup processes for the We numbers are obtained. A dynamic approach to the determination of average droplet sizes is considered. A physical model of a coaxial gas-liquid jet with a central fluid supply is proposed. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index