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CFD Analysis of Laminar Mixing Mechanism and Performance in an Oscillatory Baffled Reactor

  • Ryosuke Murotani
  • , Takafumi Horie
  • , Satoko Fujioka
  • , Yoshiyuki Komoda
  • , Naoto Ohmura
  • , Hayato Masuda
  • , Erika Okita
  • , Masahiro Yasuda

Research output: Contribution to journalArticlepeer-review

Abstract

The mixing mechanism in an oscillatory baffled reactor (OBR) at the low oscillatory Reynolds number was analyzed using numerical simulation. OBR is a tubular reactor in which baffles are placed at equal intervals, and the interaction between the baffles and oscillatory flow mixes the fluid. At the low oscillatory Reynolds number, mixing induced by the folding and stretching of the fluid was observed at each baffle section. This was caused by the radial flow in the vicinity of the baffles when the direction of the oscillatory flow was reversed. The mixing performance was quantified by applying virtual particle tracing, setting up a virtual boundary surface, and following the changes in its area over time. The area increased exponentially, confirming the chaotic mixing characteristics.

Original languageEnglish
Pages (from-to)1114-1123
Number of pages10
JournalChemical Engineering and Technology
Volume47
Issue number8
DOIs
Publication statusPublished - 2024 Aug

Keywords

  • Chaotic mixing
  • Computational fluid dynamics
  • Laminar mixing
  • Oscillatory baffled reactor
  • Process intensification

ASJC Scopus subject areas

  • General Chemistry
  • General Chemical Engineering
  • Industrial and Manufacturing Engineering

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