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Reduced models for ETG transport in the pedestal

Author
Abstract

This paper reports on the development of reduced models for electron temperature gradient (ETG) driven transport in the pedestal. Model development is enabled by a set of 61 nonlinear gyrokinetic simulations with input parameters taken from the pedestals in a broad range of experimental scenarios. The simulation data has been consolidated in a new database for gyrokinetic simulation data, the Multiscale Gyrokinetic Database (MGKDB), facilitating the analysis. The modeling approach may be considered a generalization of the standard quasilinear mixing length procedure. The parameter η, the ratio of the density to temperature gradient scale length, emerges as the key parameter for formulating an effective saturation rule. With a single order-unity fitting coefficient, the model achieves an RMS error of 15%. A similar model for ETG particle flux is also described. We also present simple algebraic expressions for the transport informed by an algorithm for symbolic regression.

Year of Publication
2022
Journal
Physics of Plasmas
Volume
29
Issue
6
Number of Pages
062501
URL
https://doi.org/10.48550/arXiv.2201.07831
DOI
10.1063/5.0087403
Dataset
10.1063/5.0087403
PId
d95cf0e21886a94fcd4334ac197ae864
Alternate Journal
Phys. Plasmas
Label
OA
Attachment
Journal Article
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