Bulletin of the American Physical Society
71st Annual Meeting of the APS Division of Fluid Dynamics
Volume 63, Number 13
Sunday–Tuesday, November 18–20, 2018; Atlanta, Georgia
Session Q21: Experimental Techniques: Liquid Jets, Sprays, Bubbles and Optically Dense Flows
12:50 PM–3:26 PM,
Tuesday, November 20, 2018
Georgia World Congress Center
Room: B309
Chair: Theodore Heindel, Iowa State University
Abstract ID: BAPS.2018.DFD.Q21.5
Abstract: Q21.00005 : High Speed Observations of the Near-Field Region from an Electrified Airblast Atomizer
1:42 PM–1:55 PM
Presenter:
Thomas Jerome Burtnett
(Iowa State Univ)
Authors:
Thomas Jerome Burtnett
(Iowa State Univ)
Timothy B Morgan
(Iowa State Univ)
Danyu Li
(Iowa State Univ)
Julie K Bothell
(Iowa State Univ)
Theodore J. Heindel
(Iowa State Univ)
Alberto Osuna Aliseda
(University of Washington)
Nathanael Machicoane
(University of Washington)
Katarzyna Matuzik
(Argonne National Laboratory)
Alan L Kastengren
(Argonne National Laboratory)
Liquid sprays play a key role in many engineering processes (e.g., food processing, coating and painting, 3D printing, fire suppression, combustion systems, etc.). The dynamics at the nozzle exit have a large impact on the downstream spray characteristics. However, visualizing the spray in this region is extremely challenging because, under most operating conditions, the spray is optically dense. High intensity white beam X-rays, like those found at the Advanced Photon Source (APS) at Argonne National Laboratory, can be used to produce time-resolved visualizations of the liquid-gas structures in the spray near-field region. In this study, high speed, high spatially resolved X-ray images are acquired of a canonical airblast atomizer consisting of coaxial water and air jets. The liquid nozzle is electrified with up to -5 kV to enhance the atomization process. Features of this electrified atomizer will be described, discussed, and compared to a non-electrified condition, and the unique high speed X-ray imaging capabilities of APS will be stressed.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DFD.Q21.5
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