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Modeling of Basic Physics Issues in Toroidal Pinches and Tools for Performance Control

Conference Poster
Publication Date:
2021
abstract:
Recent progress about helical self-organization studies is reported. Extensive exploita5on of 3D nonlinear visco-resistive modeling, SpeCyl code, which describes current-driven dynamics typical of pinch configura5ons in cylindrical geometry. Magnetic topology studies are based on the Field Line Tracing code NEMATO and a new refined tool to detect Lagrangian Coherent Structures is compared with results from a temperature equa/on solver. The following Physics Issues in helical self-organization are addressed: o Boundary Conditions and dimensionless parameters impact, (RFP, and circular Tokamak) o Forma5on of internal transport barriers, (RFP) o Temporary loss of opera5onal point, reconnec5on events, (RFP and circular Tokamak), o Alfvén waves excitation (RFP and circular Tokamak), RESULTS show: o Reasonable comparison (validation) with RFP experimental observations, o Similarities between RFP and Tokamak-like configuration.
Iris type:
04.03 Poster in Atti di convegno
Keywords:
Basic Physics Issues; Toroidal Pinches; Performance Control; Reversed Field Pink; Tokamak
List of contributors:
Spizzo, Gianluca; Bonfiglio, Daniele; Grasso, Daniela; Cappello, Susanna; Manduchi, Gabriele
Authors of the University:
BONFIGLIO DANIELE
CAPPELLO SUSANNA
GRASSO DANIELA
MANDUCHI GABRIELE
SPIZZO GIANLUCA
Handle:
https://iris.cnr.it/handle/20.500.14243/398739
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URL

https://conferences.iaea.org/event/214/contributions/17619/attachments/10105/14414/IAEA_CAPPELLO_1047_THP7_12_POSTER_final.pdf
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