Investigation of Multiphase Flow in a Packed Bed Reactor under Microgravity Conditions
Author(s) -
Yongsheng Lian,
Brian Motil,
Enrique Ramé
Publication year - 2016
Publication title -
46th aiaa fluid dynamics conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2016-4274
Subject(s) - packed bed , flow (mathematics) , nuclear engineering , multiphase flow , materials science , environmental science , mechanics , process engineering , chemical engineering , engineering , physics
In this paper we study the two-phase flow phenomena in a packed bed reactor using an integrated experimental and numerical method. The cylindrical bed is filled with uniformly sized spheres. In the experiment water and air are injected into the bed simultaneously. The pressure distribution along the bed will be measured. The numerical simulation is based on a two-phase flow solver which solves the Navier-Stokes equations on Cartesian grids. A novel coupled level set and moment of fluid method is used to construct the interface. A sequential method is used to position spheres in the cylinder. Preliminary experimental results showed that the tested flow rates resulted in pulse flow. The numerical simulation revealed that air bubbles could merge into larger bubbles and also could break up into smaller bubbles to pass through the pores in the bed. Preliminary results showed that flow passed through regions where the porosity is high. Comparison between the experimental and numerical results in terms of pressure distributions at different flow injection rates will be conducted. Comparison of flow phenomena under terrestrial gravity and microgravity will be made.
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