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Quasilinear theory and modelling of gyrokinetic turbulent transport in tokamaks

Author
Abstract

The theory, development, and validation of reduced quasilinear models of gyrokinetic turbulent transport in the closed flux surface core of tokamaks is reviewed. In combination with neoclassical collisional transport, these models are successful in accurately predicting core tokamak plasma temperature, density, rotation, and impurity profiles in a variety of confinement regimes. Refined experimental tests have been performed to validate the predictions of the quasilinear models, probing changes in the dominant gyrokinetic instabilities, as reflected in fluctuation measurements, cross-phases, and transport properties. These tests continue to produce a deeper understanding of the complex mix of instabilities at both electron and ion gyroradius scales.

Year of Publication
2024
Journal
Nuclear Fusion
Volume
64
Issue
10
Number of Pages
103001
Publisher
IOP Publishing
DOI
10.1088/1741-4326/ad6ba5
PId
d304ef43e288da22d43c9227d7d53770
Alternate Journal
Nucl. Fusion
Label
OA
Journal Article
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