Impurity radiation seeding of neoclassical tearing mode growth

Fuente: arXiv
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Autori principali: Zeng, Shiyong, Zhu, Ping, Howell, Eric C.
Natura: Preprint
Pubblicazione: 2024
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author Zeng, Shiyong
Zhu, Ping
Howell, Eric C.
author_facet Zeng, Shiyong
Zhu, Ping
Howell, Eric C.
contents The physics of neoclassical tearing mode (NTM) is of great concern to the tokamak plasma stability and performance, especially in the burning plasma regime. Whereas a great deal about the different seeding mechanisms have been understood, and in many situations the seed event can be clearly identified, the potential seeding process of NTM due to the resistive tearing instability driven by the impurity radiation cooling still needs more studies. Recent NIMROD simulations have demonstrated that the local impurity radiation cooling can drive the seed island growth and trigger the subsequent onset of neoclassical tearing mode instability. The seed island is mainly driven by the local helical perturbation of the diamagnetic current induced by the perturbed pressure gradient as a result of the impurity radiative cooling on the rational surface. A heuristic closure for the neoclassical viscosity is adopted, and the seed island is further driven by the perturbed bootstrap current induced from the neoclassical electron viscous stress in the extended Ohm's law. The growth rate of the NTM in simulations is found proportional to the electron neoclassical viscosity, and a theoretical neoclassical driving term is adopted to account for the nonlinear neoclassical island growth in the simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2410_20787
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Impurity radiation seeding of neoclassical tearing mode growth
Zeng, Shiyong
Zhu, Ping
Howell, Eric C.
Plasma Physics
76W05 (Primary)
J.2
The physics of neoclassical tearing mode (NTM) is of great concern to the tokamak plasma stability and performance, especially in the burning plasma regime. Whereas a great deal about the different seeding mechanisms have been understood, and in many situations the seed event can be clearly identified, the potential seeding process of NTM due to the resistive tearing instability driven by the impurity radiation cooling still needs more studies. Recent NIMROD simulations have demonstrated that the local impurity radiation cooling can drive the seed island growth and trigger the subsequent onset of neoclassical tearing mode instability. The seed island is mainly driven by the local helical perturbation of the diamagnetic current induced by the perturbed pressure gradient as a result of the impurity radiative cooling on the rational surface. A heuristic closure for the neoclassical viscosity is adopted, and the seed island is further driven by the perturbed bootstrap current induced from the neoclassical electron viscous stress in the extended Ohm's law. The growth rate of the NTM in simulations is found proportional to the electron neoclassical viscosity, and a theoretical neoclassical driving term is adopted to account for the nonlinear neoclassical island growth in the simulations.
title Impurity radiation seeding of neoclassical tearing mode growth
topic Plasma Physics
76W05 (Primary)
J.2
url https://arxiv.org/abs/2410.20787