The optimal conditions under which confined plasmas can reach ignition are identified referring in particular to the parameters of the Ignitor machine. The key importance of the radial profiles of the particle density, the thermal energy diffusivity, the plasma pressure, the function q(y), etc., is demonstrated. Peaked density profiles, such as those obtained in the Alcator A and C experiments (at about the same central density and magnetic field as in Ignitor), characterized by minimal thermal diffusivities and high plasma purity, are shown to be best suited for ignition. The H-mode regime in Ignitor is accessible but not considered a priority because of the typically flat density profiles. The role of collective modes and their interaction with both high and low energy a-particle populations are assessed. For the modes generating sawtooth oscillations and involving magnetic reconnection the stabilizing effect of "shoulder" q(y) profiles is pointed out together with the role of the trapped ion population.

Optimal regimes for ignition and the Ignitor experiment

2001

Abstract

The optimal conditions under which confined plasmas can reach ignition are identified referring in particular to the parameters of the Ignitor machine. The key importance of the radial profiles of the particle density, the thermal energy diffusivity, the plasma pressure, the function q(y), etc., is demonstrated. Peaked density profiles, such as those obtained in the Alcator A and C experiments (at about the same central density and magnetic field as in Ignitor), characterized by minimal thermal diffusivities and high plasma purity, are shown to be best suited for ignition. The H-mode regime in Ignitor is accessible but not considered a priority because of the typically flat density profiles. The role of collective modes and their interaction with both high and low energy a-particle populations are assessed. For the modes generating sawtooth oscillations and involving magnetic reconnection the stabilizing effect of "shoulder" q(y) profiles is pointed out together with the role of the trapped ion population.
2001
Istituto di fisica del plasma - IFP - Sede Milano
Inglese
18th IAEA Fusion Energy Conference
18th IAEA Fusion Energy Conference
http://www-pub.iaea.org/MTCD/publications/PDF/csp_008c/pdf/icp_08.pdf
No
4-10 October 2000
Sorrento, Italy
___
Aricolo numero ICP/08
0
none
B. Coppi ; A. Airoldi ; F. Bombarda ; G. Cenacchi ; P. Detragiache ; L. E. Sugiyama
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/209918
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