Data di Pubblicazione:
2003
Abstract:
Particle transport in magnetized plasmas is investigated with a fluid model of drift wave turbulence.
An analytical calculation shows that magnetic field curvature and thermodiffusion drive an anomalous
pinch. The curvature driven pinch velocity is consistent with the prediction of turbulence equipartition
theory. The thermodiffusion flux is found to be directed inward for a small ratio of electron to ion
pressure gradient, and it reverses its sign when increasing this ratio. Numerical simulations confirm that
a turbulent particle pinch exists. It is mainly driven by curvature for equal ion and electron heat sources.
The sign and relative weights of the curvature and thermodiffusion pinches are consistent with the
analytical calculation.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
diffusione; convezione; turbolenza; plasma; JET
Elenco autori:
Garzotti, Luca; Mantica, Paola
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