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pro vyhledávání: '"S. Pécoul"'
Publikováno v:
Computer Physics Communications. 146:166-187
A realistic modeling of ICRH antennas requires the knowledge of the antenna currents. The code ICANT determines self-consistently these currents and, as a byproduct, the electrical characteristics of the antenna (radiated power, propagation constants
Autor:
A. Becoulet, Ph. Ghendrih, M. Becoulet, S. Pécoul, L. Colas, James Paul Gunn, Stéphane Heuraux
Publikováno v:
Physics of Plasmas. 9:2619-2632
The two-dimensional (2D) edge plasma density distribution in the scrape off layer magnetically connected to the ion cyclotron resonance heating (ICRH) antennae is studied experimentally and numerically in the tokamak Tore Supra. A local density decre
Publikováno v:
AIP Conference Proceedings.
In 1998 the operation of Tore Supra ICRF antennas was perturbed by hot spots on a Faraday Screen and metallic impurity production [1]. The process responsible for the antenna-plasma interaction is suspected to be linked with RF-sheaths [2]. Modificat
Publikováno v:
AIP Conference Proceedings.
The new ICRH antenna planned for the Enhanced Performance phase of JET (JET-EP) is analyzed using the antenna coupling code ICANT, which self-consistently determines the currents on all antenna parts. This study addresses, using a simplified antenna
Publikováno v:
AIP Conference Proceedings.
Self-consistent calculations of the 3D electric field patterns between the screen and the plasma have been made with the ICANT code for realistic antennas. Here we explain how the ICRH antennas of the Tore Supra tokamak are modelled.
Publikováno v:
AIP Conference Proceedings.
The code deals with 3D antenna structures (finite length antennae) that are used to launch electromagnetic waves into tokamak plasmas. The antenna radiation problem is solved using a finite boundary element technique combined with a spectral solution
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Akademický článek
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