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March 15, 2017, 12:54 |
Multiphase flow in stirred vessel
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#1 |
Senior Member
Chaotic Water
Join Date: Jul 2012
Location: Elgrin Fau
Posts: 438
Rep Power: 18 |
Hi, everyone
Trying to simulate multiphase flow in stirred vessel: continuous phase (Water) + dispersed phase (Particles). Physics: - Eulerian Segregated Multiphase, two phases: Water and Particles, both are turbulent (k-ε or k-ω), Gravity and Solid Pressure are set; - Multiphase Interaction: Continous-Dispersed, Particle Diameter is set (Interphase Length Scale) to 0.2 mm, Turbulent Dispersion Force, Virtual Mass Force, Drag Force (Gidaspow); - Two regions: stationary and rotating (1000 rpm); - Initial conditions: zero velocity, dispersed phase is settled (with Volume Fraction of 0.5-0.6) on the bottom occupying ~10% of tank height; - Volume Fraction Convection = 2nd-order, Temporal Discretization = 2nd-order; Stopping criteria for inner iterations: - Maximum fluid velocity asymptotic; - Volume Integral of Volume Fraction of Particles asymptotic. Mesh is fine, prism layer is fine, but i encounter problems: - In steady case (regardless under-relaxation factors even with ramp): Volume Integral of Volume Fraction of Particles decreases significantly during computation, thus dispersed phase is lost. Can't fix it at all. - In transient case situation with dispersed phase is much better, but requires physical time is high and rpm is high (leads to small time step). - Also i get huge Turbulent Viscosity of dispersed phase (and Y+ on the mixer body is up to 10000-50000) around the mixer body although all the dispersed phase is still on the bottom of the tank. To shorten the post I might have omitted some points that are important - ask if there are any. Can anyone please suggest any idea/advice on the matter? |
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