The statistical properties of the subgrid energy transfers of homogeneous small-scale dynamo are investigated during the kinematic, nonlinear and statistically saturated stages. We carry out an a priori analysis of data obtained from an ensemble of direct numerical simulations on 5123 grid points and at unity magnetic Prandtl number. In order to provide guidance for subgrid-scale (SGS) modelling of different types of energy transfer that occur in magnetohydrodynamic dynamos, we consider the SGS stress tensors originating from inertial dynamics, Lorentz force and the magnetic induction separately. We find that all SGS energy transfers display some degree of intermittency as quantified by the scale-dependence of their respective probability density functions. Concerning the inertial dynamics, a depletion of intermittency occurs in presence of a saturated dynamo.

Offermans, G.p., Biferale, L., Buzzicotti, M., Linkmann, M. (2018). A priori study of the subgrid energy transfers for small-scale dynamo in kinematic and saturation regimes. PHYSICS OF PLASMAS, 25(12), 122307 [10.1063/1.5046842].

A priori study of the subgrid energy transfers for small-scale dynamo in kinematic and saturation regimes

Biferale, Luca;Buzzicotti, Michele;
2018-01-01

Abstract

The statistical properties of the subgrid energy transfers of homogeneous small-scale dynamo are investigated during the kinematic, nonlinear and statistically saturated stages. We carry out an a priori analysis of data obtained from an ensemble of direct numerical simulations on 5123 grid points and at unity magnetic Prandtl number. In order to provide guidance for subgrid-scale (SGS) modelling of different types of energy transfer that occur in magnetohydrodynamic dynamos, we consider the SGS stress tensors originating from inertial dynamics, Lorentz force and the magnetic induction separately. We find that all SGS energy transfers display some degree of intermittency as quantified by the scale-dependence of their respective probability density functions. Concerning the inertial dynamics, a depletion of intermittency occurs in presence of a saturated dynamo.
2018
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/02 - FISICA TEORICA, MODELLI E METODI MATEMATICI
English
Con Impact Factor ISI
https://arxiv.org/abs/1807.00759
Offermans, G.p., Biferale, L., Buzzicotti, M., Linkmann, M. (2018). A priori study of the subgrid energy transfers for small-scale dynamo in kinematic and saturation regimes. PHYSICS OF PLASMAS, 25(12), 122307 [10.1063/1.5046842].
Offermans, Gp; Biferale, L; Buzzicotti, M; Linkmann, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/264439
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