Bulletin of the American Physical Society
63rd Annual Meeting of the APS Division of Plasma Physics
Volume 66, Number 13
Monday–Friday, November 8–12, 2021; Pittsburgh, PA
Session JO09: Fundamental: Turbulence and Transport
2:00 PM–5:00 PM,
Tuesday, November 9, 2021
Room: Rooms 403-405
Chair: Benjamin Faber, UW Madison
Abstract: JO09.00010 : Kinetic Stress and Particle Transport by Stochastic Fields and Turbulence *
3:48 PM–4:00 PM
Presenter:
Chang-Chun Chen
(University of California, San Diego)
Authors:
Chang-Chun Chen
(University of California, San Diego)
Patrick H Diamond
(University of California, San Diego)
Rameswar Singh
(University of California, San Diego)
Steven Tobias
(Univ of Leeds)
We propose a model to analytically derive the toroidal momentum transport and particle transport—we calculate the real diffusivity of particle and parallel momentum. Also, the physics of kinetic stress (K) and compressible heat, which play important roles in momentum and particle evolution, are further analyzed. We address this magnetic geometry effect to understand this “tail wagging the dog” feedback. Besides recovering the effective diffusivity Deff = CsDM in ‘stochastic field regime’, where Cs is sound speed and DM is the familiar stochastic field diffusivity of Rosenbluth et al., we obtain a hybrid turbulent viscosity Dν = Cs2Σk |bx,k |2 /k⊥DT in ‘strong turbulent regime’ such that Κ=-Dν ∂x〈uz〉, where DT is turbulent fluid diffusivity. This indicates that the actual diffusivity Dν describes how the mean flow is scattered perpendicularly by the synergy of stochastic fields and the strongly turbulent flow. Finally, there are several implications of those results for the physics of the kinetic stress and toroidal rotation. Discussions of these will be presented.
* This work is supported by the U.S. Department of Energy under Award No. DE-FG02-04ER54738.
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