• CFD APPROACH TO SIMULATE TWO PHASE FLOW INLINE-SEPARATOR COUPLING IBM, LES, LAGRANGIAN TRACKING AND VOF METHODS 

      ATMANI, Hanane; ZAMANSKY, Rémi; CLIMENT, Eric; LEGENDRE, Dominique (SINTEF Proceedings;6, Chapter; Peer reviewed, 2020)
      x Inline fluid separation using a swirl element is a recent technology for oil/gas processing. Centrifugal forces up to 100 times the gravitational acceleration separate the phases, leaving the heavy phase close to the ...
    • Development of GPU Parallel Multiphase flow solver for turbulent slurry flows in cyclone 

      Mayank, Kumar; Banerjee, Raja; Mangadoddy, Narasihmha (SINTEF Proceedings;2, Chapter; Conference object; Peer reviewed, 2017)
      The development of GPU parallelized unstructured multiphase solver and its application in predicting turbulent swirling flow of slurries inside cyclones is presented. Algebraic slip mixture model (ASM) is modified with ...
    • Flow dynamics studies for flexible operation of continuous casters (flow flex cc) 

      Forslund, Tobias; Barestrand, Henrik; Ramirez Lopez, Pavel E.; Jalali, Pooria; Olofsson, Christer; Lindbäck, Tobias; Roos, Erik (SINTEF Proceedings;2, Chapter; Conference object; Peer reviewed, 2017)
      Flow dynamics of liquid steel within the Continuous Casting (CC) mould are critical for process stability and the quality of final products. An “optimal” flow provides enough circulation of the metal to avoid freezing, but ...
    • Modelling of particle transport and bed-formation in pipelines 

      Narayanan, C.; Gupta, S.; Lakehal, D. (SINTEF Proceedings;1, Chapter, 2015)
      Particle transport and bed formation in gas and condensate pipelines could occur under various flow regimes, from dilute flows to high mass-loading conditions, to conditions where particle beds form in the pipeline. Proper ...
    • Parallel multiphase flow software for solving the Navier‐Stokes equations 

      Al-Rashed, Fahad S.; Shariff, Maher M. (SINTEF Proceedings;2, Chapter; Conference object; Peer reviewed, 2017)
      A code based on finite element method was built and applied on the variable density incompressible Navier-Stokes equations for accurately simulating immiscible two phase flows. The algorithm simulates the interface ...