Free-Surface Flows: Waves

ORAL · T32 · ID: 3582561






Presentations

  • ORAL

    Presenters

    • Daisuke Takagi

      • University of Hawaii at Manoa

    Authors

    • Daisuke Takagi

      • University of Hawaii at Manoa
    • Ben P Weiss

      • Cornell University
    • Yukun Sun

      • Cornell University
    • Sungyon Lee

      • Department of Mechanical Engineering, University of Minnesota.
      • University of Minnesota.
      • University of Minnesota
    • Sunghwan Jung

      • Cornell University
    • Chris Roh

      • Cornell University

    View abstract →

  • ORAL

    Publication: Published:
    Askarizadeh, H., Ahmadikia, H., Ehrenpreis, C., Kneer, R., Pishevar, A., & Rohlfs, W. (2019). Role of gravity and capillary waves in the
    origin of circular hydraulic jumps. Physical Review Fluids, 4(11), 114002.
    DOI: 10.1103/PhysRevFluids.4.114002

    Askarizadeh, H., Ehrenpreis, C., Kneer, R., & Rohlfs, W. (2021). Assessment of the interface compression scheme in the volume-offluid
    modeling of circular hydraulic jumps. Atomization and Sprays, 31(5).
    DOI: 10.1615/AtomizSpr.2021034770

    Askarizadeh, H.; Ahmadikia, H.; Ehrenpreis, C.; Kneer, R.; Pishevar, A.; Rohlfs, W. (2020). Heat transfer in the hydraulic jump region of
    circular free-surface liquid jets. In International Journal of Heat and Mass Transfer 146, p. 118823.
    DOI: 10.1016/j.ijheatmasstransfer.2019.118823

    Planed:
    This work will be submitted after the conference for publication.

    Presenters

    • Leon Wanitschek

      • Institute of Heat and Mass Transfer, RWTH Aachen University, Augustinerbach 6, 52056 Aachen

    Authors

    • Leon Wanitschek

      • Institute of Heat and Mass Transfer, RWTH Aachen University, Augustinerbach 6, 52056 Aachen
    • Wilko Rohlfs

      • Institute of Heat and Mass Transfer, RWTH Aachen University, Augustinerbach 6, 52056 Aachen
    • Reinhold Kneer

      • Institute of Heat and Mass Transfer, RWTH Aachen University, Augustinerbach 6, 52056 Aachen
    • Hossein Askarizadeh Ravizi

      • Institute of Heat and Mass Transfer, RWTH Aachen University, Augustinerbach 6, 52056 Aachen

    View abstract →