Anomalous ion heating intrinsic to magnetic fluctuation-induced electron heat transport, the locking of global modes through wall conditions, and flow generation via the magnetic Reynolds stress all derive from the global, m = 1 tearing modes familiar in the RFP as the dynamo modes. These important processes are investigated analytically and numerically, yielding new insights and predictions for comparison with experiment.

The Role of Dynamo Fluctuations in Anomalous Ion Heating, Mode Locking, and Flow Generation / P. W., Terry; Gatto, Renato; R., Fitzpatrick; C. C., Hegna; G., Fiksel. - STAMPA. - (2000), p. THP1/04. (Intervento presentato al convegno International Atomic Energy Agency Fusion Energy Conference 2000 tenutosi a Sorrento (Napoli), Italy nel November 2000).

The Role of Dynamo Fluctuations in Anomalous Ion Heating, Mode Locking, and Flow Generation.

GATTO, RENATO;
2000

Abstract

Anomalous ion heating intrinsic to magnetic fluctuation-induced electron heat transport, the locking of global modes through wall conditions, and flow generation via the magnetic Reynolds stress all derive from the global, m = 1 tearing modes familiar in the RFP as the dynamo modes. These important processes are investigated analytically and numerically, yielding new insights and predictions for comparison with experiment.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/533861
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