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Published byAntonia Gordon Modified over 9 years ago
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Simulating Multiphase Flow in Chemical & Process Engineering with TransAT July 2012 ASCOMP www.ascomp.ch transat@ascomp.ch
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No. of comp. particles: 43815 No. of real particles: 219075 Two-way coupling. Re of flow: ReD = 52400 Mass loading = 0.034 (in the primary jet). Diameter range: 11-120 microns LES using WALE Grid: 551.000 Swirling particulate jet mixing CLICK ON MOVIES
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TransAT results (intermediate: 0.5m points)
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Flow in an impinging micro-jet reactor
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Instantaneous vorticity magnitudes: constant inflows (left) and unsteady asymmetric inflows (right). Instantaneous velocity magnitudes with 90 ml/min flow rate: constant inflows (left) and unsteady asymmetric inflows (right). Flow in an impinging micro-jet reactor
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Mean U and V velocity components RMS : u’ and v’ components Comparison unsteady inflows (blue), constant inflows (red) and mPIV data (symbols). Flow in a confined impinging jet reactor
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CLICK ON MOVIES
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Flow in a cyclone separator
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Multiphase Flow in a Hydrocyclone separator
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Porous media represented with particules CLICK ON MOVIES
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Droplet cooling (for CIBA Switzerland) THE ISSUES turbulent flow Particle affecting momentum Particle interacting with wall Particles exchanging heat Complex configuration Unsteady 240 hole, 600 hole, and 1000 hole configurations
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Droplet cooling in gravity towers 22m high tower No. of comp. particles: 100.000 Two-way coupling momentum and heat. Re of flow: ReD = 75000 Mass loading = 0.1. Diameter range: 600 microns URANS & LES Grid: 2000.000 CLICK ON MOVIES
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Recommendations
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Fluidized beds Variable class of particles Four-way coupling momentum Accounts for particle packing Accounts for settling CLICK ON MOVIES
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Sedimentation of particle media Variable class of particles Two-way coupling momentum Accounts for particle packing Accounts for settling CLICK ON MOVIES
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Water Emulsion in Oil Settling Settling of water emulsion in oil. Model development phase.
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