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Transport Mechanisms and Enhanced Confinement Studies in RFX

Academic Article
Publication Date:
2001
abstract:
The results of an extensive study on transport mechanisms and on improved confinement scenarios in RFX are reported. The scaling of the thermal conductivity in the core with the Lundquist number indicates that the magnetic field in this region is not fully stochastic, as proved by the existence of thermal barriers observed in Single Helicity configurations. The electrostatic transport at the edge has been proved to depend on the highly sheared ExB flow which has been interpreted by fluid and Monte Carlo models. Regimes of improved confinement have been obtained in the core by Poloidal Current Drive techniques and the electrostatic transport has been reduced at the edge by biasing experiments. A radiation mantle by impurity seeding has been found to successfully reduce the local plasma wall interaction without significantly deteriorating the plasma performance.
Iris type:
01.01 Articolo in rivista
Keywords:
REVERSED-FIELD-PINCH; ELECTROSTATIC TURBULENCE; PLASMA; REDUCTION
List of contributors:
Murari, Andrea; Pomaro, Nicola; Martines, Emilio; Antoni, Vanni; DE LORENZI, Antonio; Taliercio, Cesare; Garzotti, Luca; Serianni, Gianluigi; Marrelli, Lionello; Innocente, Paolo; Vianello, Nicola; Spolaore, Monica; Spizzo, Gianluca; Terranova, David; Luchetta, ADRIANO FRANCESCO; Ortolani, Sergio; Puiatti, MARIA ESTER; Piovan, Roberto; Paccagnella, Roberto; Scarin, Paolo; Toigo, Vanni; Valisa, Marco; Zaccaria, Pierluigi; Carraro, Lorella; Cappello, Susanna; Gaio, Elena; Martini, Stefano; Marchiori, Giuseppe; Manduchi, Gabriele; Pasqualotto, Roberto
Authors of the University:
CAPPELLO SUSANNA
CARRARO LORELLA
INNOCENTE PAOLO
LUCHETTA ADRIANO FRANCESCO
MANDUCHI GABRIELE
MARCHIORI GIUSEPPE
MARRELLI LIONELLO
MURARI ANDREA
PASQUALOTTO ROBERTO
POMARO NICOLA
SERIANNI GIANLUIGI
SPIZZO GIANLUCA
SPOLAORE MONICA
TALIERCIO CESARE
TERRANOVA DAVID
VALISA MARCO
VIANELLO NICOLA
Handle:
https://iris.cnr.it/handle/20.500.14243/25394
Published in:
NUCLEAR FUSION
Journal
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URL

http://iopscience.iop.org/0029-5515/41/4/008/
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