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applications:fluid:taylorcouette

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Dam collapse

  • 2D simulation of Taylor-Couette flow between two cylinders.
  • Values of density = 1.0 kg/m3, dynamic viscosity = 0.1 Pa s, inner cylinder angular velocity = π rad/s, outer cylinder angular velocity = 0 rad/s.
  • A monolithic PFEM (Particle-FEM) formulation with Petrov-Galerkin Pressure stabilization is used.
Velocity field - PFEM solution

<html> <iframe width=“350” height=“315” src=“www.youtube.com/embed/_gA4mH27oSE” frameborder=“0” allowfullscreen></iframe> </html> </WRAP>

Velocity field - steady state Eulerian FEM solution

Taylor-Couette velocity steady-state solution

</WRAP>

Pressure field - PFEM solution

<html> <iframe width=“350” height=“315” src=“www.youtube.com/embed/” frameborder=“0” allowfullscreen></iframe> </html> </WRAP>

Pressure field - steady state Eulerian FEM solution

Taylor-Couette pressure steady-state solution

</WRAP>

applications/fluid/taylorcouette.1461765519.txt.gz · Last modified: 2016/04/27 15:58 by cerquaglia

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