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Multiphase Flows: Computational Methods II

ORAL · G35 · ID: 1764134





Presentations

  • A novel phase field method for droplet freezing

    ORAL

    Publication: Brown, L., Jain, S., and Moin, P., "A Phase Field Model for Simulating the Freezing of Supercooled Liquid Droplets," SAE Technical Paper 2023-01-1454, 2023, https://doi.org/10.4271/2023-01-1454.

    Presenters

    • Lucy J Brown

      Center for Turbulence Research, Stanford University

    Authors

    • Lucy J Brown

      Center for Turbulence Research, Stanford University

    • Suhas S Jain

      Stanford University, Center for Turbulence Research, Stanford University, CA, 94305, Center for Turbulence Research, Stanford University

    • Parviz Moin

      Stanford University, Center for Turbulence Research, Stanford University, Stanford Univ

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  • Unstructured Finite-Volume Arbitrary Lagrangian / Eulerian Interface Tracking computational framework for incompressible two-phase flows with surfactants

    ORAL

    Publication: Tuković, Ž., & Jasak, H. (2012). A moving mesh finite volume interface tracking method for surface tension dominated interfacial fluid flow. Computers & fluids, 55, 70-84.<br><br>Pesci, C., Weiner, A., Marschall, H., & Bothe, D. (2018). Computational analysis of single rising bubbles influenced by soluble surfactant. Journal of Fluid Mechanics, 856, 709-763.<br><br>Schwarzmeier, M., Raju, S., Tukovic, Z., Bothe, D., Maric, T., (2023), Unstructured Finite-Volume Arbitrary Lagrangian / Eulerian Interface Tracking computational framework for incompressible two-phase flows with surfactants, (in preparation)

    Presenters

    • Moritz Schwarzmeier

      Mathematical Modeling and Analysis, TU Darmstadt, Germany

    Authors

    • Moritz Schwarzmeier

      Mathematical Modeling and Analysis, TU Darmstadt, Germany

    • Suraj Raju

      Mathematical Modeling and Analysis, TU Darmstadt, Germany

    • Zeljko Tukovic

      Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Croatia

    • Dieter Bothe

      Mathematical Modeling and Analysis, TU Darmstadt, Germany

    • Tomislav Maric

      Mathematical Modeling and Analysis, TU Darmstadt, Germany

    View abstract →