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Evaluation of abrupt energy transfer among turbulent plasma structures using singular value decomposition

Authors :
Sasaki, Makoto
Kobayashi, Tatsuya
DENDY, R.O.
Kawachi, Y.
Arakawa, H.
INAGAKI, Shigeru
Sasaki, Makoto
Kobayashi, Tatsuya
DENDY, R.O.
Kawachi, Y.
Arakawa, H.
INAGAKI, Shigeru
Publication Year :
2021

Abstract

A method to quantify the energy transfer among turbulent structures using singular value decomposition (SVD) is presented. We apply the method to numerical turbulence data obtained from a global plasma simulation using the Hasegawa–Wakatani fluid model, in which the Kelvin–Helmholtz instability plays a dominant role. Using the SVD method, the electrostatic potential is decomposed into a background potential deformation, a zonal flow, a coherent mode and an intermittent structure. Thus there are four key structures, as distinct from the three found in conventional theory. The kinetic energy of each structure is evaluated, and the limit cycle among them is obtained. In the limit cycle, an abrupt change of the background is found to be synchronised with the period of the zonal flow. The energy transfer function of each turbulence structure, which is defined on the basis of a vorticity equation, is evaluated. This then provides physical understanding of how the limit cycle is sustained by dynamical changes in the energy transfer among structures over the its period. In addition, it is shown that the abrupt deformation of the background is caused by the non-linear self-coupling of the intermittent structure.<br />source:Citation M Sasaki et al 2021 Plasma Phys. Control. Fusion 63 025004<br />source:https://doi.org/10.1088/1361-6587/abcb46<br />identifier:0000-0001-6835-1569

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375192890
Document Type :
Electronic Resource