Extreme-Scale Computational Science Discovery in Fluid Dynamics and Related Disciplines I

FOCUS · Q49 · ID: 47244






Presentations

  • ORAL

    Presenters

    • Jacqueline Chen

      • Sandia National Laboratories

    Authors

    • Jacqueline Chen

      • Sandia National Laboratories
    • Martin Rieth

      • Sandia National Laboratories
    • Swapnil Desai

      • Sandia National Laboratories
    • Hessam Babaee

      • University of Pittsburgh
    • Andrea Gruber

      • SINTEF Energy Research
    • Marc Day

      • National Renewable Energy Laboratory

    View abstract →

  • ORAL

    Publication: Paul Fischer, Stefan Kerkemeier, Misun Min, Yu-Hsiang Lan, Malachi Phillips, Thilina Rath- nayake, Elia Merzari, Ananias Tomboulides, Ali Karakus, Noel Chalmers, and Tim Warburton. NekRS, a GPU-accelerated spectral element Navier-Stokes solver (under review).

    Paul Fischer, Elia Merzari, Misun Min, Stefan Kerkemeier, Yu-Hsiang Lan, Malachi Phillips, Thilina Rathnayake, April Novak, Derek Gaston, Noel Chalmers, and Tim Warburton. Highly optimized full-core reactor simulations on Summit. (2021).

    Yu-Hsiang Lan, Paul Fischer, Elia Merzari, and Misun Min. All-hex meshing strategies for densely packed spheres. In The 29th International Meshing Roundtable, 2021.

    Presenters

    • Paul Fischer

      • University of Illinois at Urbana-Champai

    Authors

    • Paul Fischer

      • University of Illinois at Urbana-Champai

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  • ORAL

    Publication: J. Buchmeier, A. Bussmann, X. Gao, I. Bermejo-Moreno "Geometry and dynamics of passive scalar structures in compressible turbulent mixing," Physics of Fluids (to appear)

    Presenters

    • Ivan Bermejo-Moreno

      • University of Southern California

    Authors

    • Ivan Bermejo-Moreno

      • University of Southern California
    • Jonas Buchmeier

      • University of Southern California
    • Alexander Bussmann

      • TU Munich
    • Xiangyu Gao

      • Univ of Southern California

    View abstract →

  • ORAL

    Publication: "A generalized von Neumann analysis for multi-level schemes: Stability and spectral accuracy", K Kumari, DA Donzis, Journal of Computational Physics 424, 109868, 2021.

    "Direct numerical simulations of turbulent flows using high-order asynchrony-tolerant schemes: accuracy and performance", K Kumari, DA Donzis, Journal of Computational Physics 419, 109626., 2021.

    "High-order asynchrony-tolerant finite difference schemes for partial differential equations", K Aditya, DA Donzis, Journal of Computational Physics 350, 550-572, 2017.

    "Asynchronous finite-difference schemes for partial differential equations", DA Donzis, K Aditya, Journal of Computational Physics 274, 370-392, 2014.

    Presenters

    • Diego A Donzis

      • Texas A&M University

    Authors

    • Diego A Donzis

      • Texas A&M University

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  • ORAL

    Presenters

    • J. Tony Li

      • University of Western Australia

    Authors

    • Snezhana I Abarzhi

      • Snezhana I. Abarzhi, University of Western Australia
      • Carnegie Mellon University
    • W. David Arnett

      • University of Arizona
    • Desmond Hill

      • University of Western Australia
      • The Unviersity of Western Australia
    • Bruce Remington

      • Lawrence Livermore National Laboratory
    • Kurt Williams

      • University of Western Australia
      • The University of Western Australia
    • J. Tony Li

      • University of Western Australia

    View abstract →