Invited: MFE VII - Turbulence and Modeling

INVITED · ZI02 · ID: 2641993





Presentations

  • Turbulence and sheared flows in fusion plasmas

    ORAL · Invited

    Publication: Suppression of temperature-gradient-driven turbulence by perpendicular flow shear in fusion plasmas (submitted, in review)

    Presenters

    • Plamen G Ivanov

      University of Oxford

    Authors

    • Plamen G Ivanov

      University of Oxford

    • Toby Adkins

      University of Otago

    • Daniel Thomas Kennedy

      UK Atomic Energy Authority

    • Maurizio Giacomin

      Università degli Studi di Padova, Dipartimento di Fisica "G. Galilei", Università degli Studi di Padova, Padova, Italy

    • Michael Barnes

      Rudolf Peierls Centre for Theoretical Physics, University of Oxford, OX1 3NP, UK

    • Alexander A Schekochihin

      University of Oxford

    View abstract →

  • Measurement of Turbulence-driven Reynolds Stress and Its Contribution to Toroidal Intrinsic Rotation in the DIII-D Tokamak

    ORAL · Invited

    Presenters

    • X. Qin

      University of California, Los Angeles, University of California Los Angeles

    Authors

    • X. Qin

      University of California, Los Angeles, University of California Los Angeles

    • George R McKee

      University of Wisconsin-Madison, University of Wisconsin, Madison

    • Benedikt Geiger

      University of Wisconsin - Madison

    • Raymond John Fonck

      University of Wisconsin - Madison

    • Zheng Yan

      University of Wisconsin - Madison, University of Wisconsin Madison

    • Filipp O Khabanov

      University of Wisconsin - Madison, Univ Wisconsin,Madison

    • Colin Chrystal

      General Atomics - San Diego, General Atomics

    • Kathreen E Thome

      General Atomics - San Diego, General Atomics

    • Patrick H. Diamond

      University of California, San Diego

    View abstract →

  • On the development of robust real-time capable ICRF modeling via machine learning

    ORAL · Invited

    Publication: Á. Sánchez-Villar et al, 49th EPS Conf. Plasma Phys. 2023 O5.104
    Á. Sánchez-Villar et al, Real-time capable modeling of ICRF heating on NSTX and WEST via
    machine learning approaches, Nucl. Fusion 2024 (under review)

    Presenters

    • Alvaro Sanchez-Villar

      Princeton University / Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory

    Authors

    • Alvaro Sanchez-Villar

      Princeton University / Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory

    • Zhe Bai

      Lawrence Berkeley National Laboratory

    • Nicola Bertelli

      Princeton Plasma Physics Laboratory, Princeton University / Princeton Plasma Physics Laboratory

    • E. W. Bethel

      San Francisco State University

    • Julien Hillairet

      CEA, IRFM

    • Talita Perciano

      Lawrence Berkeley National Laboratory

    • Syun'ichi Shiraiwa

      Princeton University / Princeton Plasma Physics Laboratory

    • Gregory Marriner Wallace

      MIT Plasma Science and Fusion Center, MIT PSFC

    • John Christopher Wright

      MIT Plasma Science and Fusion Center, Massachusetts Institute of Technology

    View abstract →

  • Full-radius integrated modelling of the H-mode confinement dependence on plasma size and predictions of ITER and DEMO

    ORAL · Invited

    Publication: This work is planned to be published in a Nuclear Fusion paper.

    Presenters

    • Teobaldo Luda di Cortemiglia

      Max-Planck-Institut für Plasmaphysik

    Authors

    • Teobaldo Luda di Cortemiglia

      Max-Planck-Institut für Plasmaphysik

    • Clemente Angioni

      Max Planck Institute for Plasma Physics, Max-Planck-Institut für Plasmaphysik, Boltzmannstr. 2, 85748 Garching, Germany

    • Clarisse Bourdelle

      CEA, IRFM, F-13108 St-Paul-Lez-Durance, France, CEA, IRFM

    • Michael G Dunne

      Max–Planck–Institut fuer Plasmaphysik

    • Emiliano Fable

      Max Planck Institut fur Plasmaphysik

    • Daniel Fajardo

      Max–Planck–Institut fuer Plasmaphysik

    • Federico Stefanelli

      Max–Planck–Institut fuer Plasmaphysik

    • Giovanni Tardini

      Max Planck Institut fur Plasmaphysik

    View abstract →