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Turbulence, Energy Transfers and Reconnection in Compressible Coronal Heating Field-line Tangling Models

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arxiv 0912.1063 v1 pith:UGE3CDP5 submitted 2009-12-05 astro-ph.SR physics.plasm-ph

Turbulence, Energy Transfers and Reconnection in Compressible Coronal Heating Field-line Tangling Models

classification astro-ph.SR physics.plasm-ph
keywords compressiblecoronalheatingdiscretizationenergyhyperionpropertiesradiative
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MHD turbulence has long been proposed as a mechanism for the heating of coronal loops in the framework of the Parker scenario for coronal heating. So far most of the studies have focused on its dynamical properties without considering its thermodynamical and radiative features, because of the very demanding computational requirements. In this paper we extend this previous research to the compressible regime, including an energy equation, by using HYPERION, a new parallelized, viscoresistive, three-dimensional compressible MHD code. HYPERION employs a Fourier collocation -- finite difference spatial discretization, and uses a third-order Runge-Kutta temporal discretization. We show that the implementation of a thermal conduction parallel to the DC magnetic field induces a radiative emission concentrated at the boundaries, with properties similar to the chromosphere--transition region--corona system.

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