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G

G. Giruzzi

Researcher at European Atomic Energy Community

Publications -  178
Citations -  5729

G. Giruzzi is an academic researcher from European Atomic Energy Community. The author has contributed to research in topics: Tokamak & Tore Supra. The author has an hindex of 38, co-authored 172 publications receiving 5118 citations. Previous affiliations of G. Giruzzi include Nancy-Université.

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Chapter 3: MHD stability, operational limits and disruptions

TL;DR: A review of recent advances in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physics Basis document (1999 Nucl. Fusion 39 2137-2664), is reviewed in this paper.
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The CRONOS suite of codes for integrated tokamak modelling

TL;DR: The CRONOS suite as mentioned in this paper is a suite of numerical codes for the predictive/interpretative simulation of a full tokamak discharge, which integrates, in a modular structure, a 1D transport solver with general 2D magnetic equilibria, several heat, particle and impurities transport models, as well as heat and particle and momentum sources.
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Experiments on neoclassical tearing mode stabilization by ECCD in ASDEX Upgrade

TL;DR: In this paper, it was shown that with an averaged ECCD power of only 4-8% of the total heating power injected into the discharge, the island width can be reduced by 40%, provided that the center of deposition is very close to the resonant surface.
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Overview of the JET results in support to ITER

X. Litaudon, +1228 more
- 15 Jun 2017 - 
TL;DR: In this paper, the authors reviewed the 2014-2016 JET results in the light of their significance for optimising the ITER research plan for the active and non-active operation, stressing the importance of the magnetic configurations and the recent measurements of fine-scale structures in the edge radial electric.
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Recent fully non-inductive operation results in Tore Supra with 6?min, 1?GJ plasma discharges

TL;DR: The Tore Supra tokamak has been used to study the heat removal capability and particle exhaust in steady-state fully non-inductive current drive discharges simultaneously.