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CLOSED-FIELD CORONAL HEATING DRIVEN BY WAVE TURBULENCE
2016
Astrophysical Journal
To simulate the energy balance of coronal plasmas on macroscopic scales, we often require the specification of the coronal heating mechanism in some functional form. To go beyond empirical formulations and to build a more physically motivated heating function, we investigate the wave-turbulence-driven (WTD) phenomenology for the heating of closed coronal loops. Our implementation is designed to capture the large-scale propagation, reflection, and dissipation of wave turbulence along a loop. The
doi:10.3847/0004-637x/832/2/180
fatcat:yuyponx2sbbzxnpvoj5mb4fdzy