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Article Dans Une Revue Physics of Plasmas Année : 2013

Multi-water-bag models of ion temperature gradient instability in cylindrical geometry

David Coulette

Résumé

Ion temperature gradient instabilities play a major role in the understanding of anomalous transport in core fusion plasmas. In the considered cylindrical geometry, ion dynamics is described using a drift-kinetic multi-water-bag model for the parallel velocity dependency of the ion distribution function. In a first stage, global linear stability analysis is performed. From the obtained normal modes, parametric dependencies of the main spectral characteristics of the instability are then examined. Comparison of the multi-water-bag results with a reference continuous Maxwellian case allows us to evaluate the effects of discrete parallel velocity sampling induced by the Multi-Water-Bag model. Differences between the global model and local models considered in previous works are discussed. Using results from linear, quasilinear, and nonlinear numerical simulations, an analysis of the first stage saturation dynamics of the instability is proposed, where the divergence between the three models is examined.
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Dates et versions

hal-00925100 , version 1 (07-01-2014)

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David Coulette, Nicolas Besse. Multi-water-bag models of ion temperature gradient instability in cylindrical geometry. Physics of Plasmas, 2013, 20, pp.052107. ⟨10.1063/1.4804272⟩. ⟨hal-00925100⟩
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