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SUMMARY:Study of RAM Vessel Diameter on Mixing Effectiveness and Faraday I
 nstabilities - Gereon Leckebusch\, PCS Group\, Cavendish Laboratory
DTSTART:20250206T150000Z
DTEND:20250206T153000Z
UID:TALK222508@talks.cam.ac.uk
CONTACT:Stephen Walley
DESCRIPTION:We investigate the effect of vessel diameter on mix completion
  time of a rocket propellant simulant\, the formation of Faraday instabili
 ties and their contribution to mixing in a Resonant Acoustic Mixer (RAM). 
 We find that previous work on vessel diameter effects was not applicable\,
  but we could not find an empirical relationship due a lack of quantity an
 d precision of data. A new method to determine mix completion was trialled
 \, evaluating the difference to mean energy input (DME). Faraday waves wer
 e shown to exist at almost all boundaries in RAM\, but their destabilisati
 on was not always the primary cause of mixing initiation.
LOCATION:Mott Seminar Room\, Cavendish Laboratory
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