Geophysical Fluid Dynamics: Climate

ORAL · R26 · ID: 1766515





Presentations

  • ORAL

    Publication: Buzzicotti, M., Storer, B. A., Khatri, H., Griffies, S. M., & Aluie, H. (2023). Spatio-temporal coarse-graining decomposition of the global ocean geostrophic kinetic energy. Journal of Advances in Modeling Earth Systems, 15, e2023MS003693. https://doi.org/10.1029/2023MS003693

    Presenters

    • Benjamin A. Storer

      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester

    Authors

    • Benjamin A. Storer

      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester
    • Pejman Hadi Sichani

      • University of Rochester
      • Department of Mechanical Engineering, University of Rochester
    • Hussein Aluie

      • Mechanical Engineering Department, University of Rochester, Rochester, NY 14625, USA
      • Dept. of Mechanical Engg, University of Rochester
      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester
      • University of Rochester

    View abstract →

  • ORAL

    Publication: Buzzicotti, M., Storer, B. A., Khatri, H., Griffies, S. M., & Aluie, H. (2023). Spatio-temporal coarse-graining decomposition of the global ocean geostrophic kinetic energy. Journal of Advances in Modeling Earth Systems, 15, e2023MS003693. https://doi.org/10.1029/2023MS003693

    Presenters

    • Pejman Hadi Sichani

      • University of Rochester
      • Department of Mechanical Engineering, University of Rochester

    Authors

    • Pejman Hadi Sichani

      • University of Rochester
      • Department of Mechanical Engineering, University of Rochester
    • Benjamin A. Storer

      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester
    • Hussein Aluie

      • Mechanical Engineering Department, University of Rochester, Rochester, NY 14625, USA
      • Dept. of Mechanical Engg, University of Rochester
      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester
      • University of Rochester

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  • ORAL

    Presenters

    • Abdus Samad

      • University of Rochester

    Authors

    • Abdus Samad

      • University of Rochester
    • Benjamin Storer

      • University of Rochester
      • UNIVERSITY OF ROCHESTER
    • Shikhar Rai

      • University of Rochester
    • Hussein Aluie

      • Mechanical Engineering Department, University of Rochester, Rochester, NY 14625, USA
      • Dept. of Mechanical Engg, University of Rochester
      • Department of Mechanical Engineering, University of Rochester, Rochester, New York, USA
      • Department of Mechanical Engineering, University of Rochester
      • University of Rochester

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  • ORAL

    Publication: Rastigejev, Y. and S. A. Suslov, 2023: Effect of sea spray polydispersity on the vertical momentum transport in a hurricane, submitted to J. Phys. Ocean.
    Rastigejev, Y. and S. A. Suslov, 2022: Investigation of sea spray effect on the vertical momentum transport using an Eulerian multi-fluid-type model, J. Phys. Ocean., 52, 99-117.
    Rastigejev, Y. and S. A. Suslov, 2019: Effect of Evaporating Sea Spray on Heat Fluxes in a Marine Atmospheric Boundary Layer, J. Phys. Ocean., 49, 1927-1948
    Rastigejev, Y. and S. A. Suslov, 2016: Two-temperature non-equilibrium model of a marine boundary layer laden with evaporating ocean spray under high-wind conditions. J. Phys. Ocean., 46, 3083-3102.
    Rastigejev Y. and S. A. Suslov, 2014: E-epsilon model of spray-laden near-sea atmospheric layer in high wind conditions. J. Phys. Ocean., 44, 742-763.
    Rastigejev Y., S. A. Suslov, and Y.-L. Lin, 2011: Effect of Ocean Spray on Vertical Momentum Transport under High-wind Conditions. Boundary-Layer Meteorology, 141, 1-20.

    Presenters

    • Yevgenii Rastigejev

      • North Carolina A&T State University

    Authors

    • Yevgenii Rastigejev

      • North Carolina A&T State University
    • Sergey A Suslov

      • Swinburne Univ of Tech

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  • ORAL

    Presenters

    • Birte Thiede

      • Max Planck Institute for Dynamics and Self-Organization

    Authors

    • Birte Thiede

      • Max Planck Institute for Dynamics and Self-Organization
    • Oliver Schlenczek

      • Max Planck Institute for Dynamics and Self-Organization
    • Freja Nordsiek

      • Max Planck Institute for Dynamics and Self-Organization
    • Eberhard Bodenschatz

      • Max Planck Institute for Dynamics and Self-Organization
    • Gholamhossein Bagheri

      • Max Planck Institute for Dynamics and Self-Organization

    View abstract →