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 Q10: Multiphase Flows: General
12:50 PM–3:26 PM,
Tuesday, November 20, 2018
Georgia World Congress Center
Room: B215
Chair: Abhinandan Chowdhury, Savannah State University
Abstract ID: BAPS.2018.DFD.Q10.8
Abstract: Q10.00008 : Proton Radiography of Explosively Dispersed Metal Particles while Under Vacuum
2:21 PM–2:34 PM
Presenter:
Kyle Hughes
(University of Florida)
Authors:
Kyle Hughes
(University of Florida)
Katherine Prestridge
(Los Alamos Natl Lab)
Nam-Ho Kim
(University of Florida)
Raphael Haftka
(University of Florida)
S Balachandar
(University of Florida)
A series of experiments performed at Los Alamos National Laboratory is aimed to provide validation data for numerical simulations performed at the PSAAPII Center of Compressible Multiphase Turbulence (CCMT). Five explosive tests were performed. Approximately 2.8 g of PBX-9501 was initiated by a RP-80 detonator. A 13 x 13 mm cylindrical packet of 100 µm steel particles was dispersed by the explosive. A time-series of 21 proton radiography images were collected at 2 µs temporal resolution, allowing penetration of the explosive products at early time and extraction of the particle fronts.
One of the challenges in simulation of the explosive dispersal of particles is the compaction model at early times and the subsequent particle collisions. To ease the modeling burden, two experimental design decisions were made to simplify the physics present. First, the experiments were done under vacuum. The removal of the ambient gas medium prevents the formation of an air-shock to propagate over the bed, subjecting the particles only to the contact discontinuity formed by the explosive product front moving into vacuum. Second, the volume fraction of the particle bed was reduced by substituting hollow glass microspheres for a portion of the steel particles.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DFD.Q10.8
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