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Comparison of saturation rules used for gyrokinetic quasilinear transport modeling

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arxiv 2308.09181 v1 pith:UT5CO5EY submitted 2023-08-17 physics.plasm-ph

classification physics.plasm-ph
keywords saturationquasilinearrulestransportgyrokineticexpressionlocalmodeling
verification ladder T0 review T1 audit T2 compute T3 formal
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Theory-based transport modeling has been widely successful and is built on the foundations of quasilinear theory. Specifically, the quasilinear expression of the flux can be used in combination with a saturation rule for the toroidal mode amplitude. Most transport models follow this approach. Saturation rules are heuristic and difficult to rigorously derive. We compare three common saturation rules using a fairly accurate quasilinear expression for the fluxes computed using local linear gyrokinetic simulation. We take plasma parameters from experimental H-mode profiles and magnetic equilibrium and include electrons, Deuterium, and Carbon species. We find that the various saturation rules give qualitatively similar behavior. This may help explain why the different theory-based transport models can all predict core tokamak profiles reasonably well. Comparisons with nonlinear local and global gyrokinetic simulations are also discussed.

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