COCONUT, a novel fast-converging MHD model for solar corona simulations: I. Benchmarking and optimization of polytropic solutions
arXiv:2205.03341 · doi:10.3847/1538-4357/ac7237
Abstract
We present a novel global 3-D coronal MHD model called COCONUT, polytropic in its first stage and based on a time-implicit backward Euler scheme. Our model boosts run-time performance in comparison with contemporary MHD-solvers based on explicit schemes, which is particularly important when later employed in an operational setting for space weather forecasting. It is data-driven in the sense that we use synoptic maps as inner boundary input for our potential field initialization as well as an inner boundary condition in the further MHD time evolution. The coronal model is developed as part of the EUropean Heliospheric FORecasting Information Asset (EUHFORIA) and will replace the currently employed, more simplistic, empirical Wang-Sheeley-Arge (WSA) model. At 21.5 Rs where the solar wind is already supersonic, it is coupled to EUHFORIA's heliospheric model. We validate and benchmark our coronal simulation results with the explicit-scheme Wind-Predict model and find good agreement for idealized limit cases as well as real magnetograms, while obtaining a computational time reduction of up to a factor 3 for simple idealized cases, and up to 35 for realistic configurations, and we demonstrate that the time gained increases with the spatial resolution of the input synoptic map. We also use observations to constrain the model and show that it recovers relevant features such as the position and shape of the streamers (by comparison with eclipse white-light images), the coronal holes (by comparison with EUV images) and the current sheet (by comparison with WSA model at 0.1 AU).
30 pages, 15 figures, accepted in the Astrophysical Journal (ApJ). B Perri and P Leitner contributed equally to this work
References in corpus (13)
- PLUTO: a Numerical Code for Computational Astrophysics
- Understanding space weather to shield society: A global road map for 2015-2025 commissioned by COSPAR and ILWS
- The effect of magnetic topology on thermally-driven winds: towards a general formulation of the braking law
- The Open Flux Problem
- Accretion-Powered Stellar Winds II: Numerical Solutions for Stellar Wind Torques
- Constrained Hyperbolic Divergence Cleaning for Smoothed Particle Magnetohydrodynamics
- Validation of the Alfvén Wave Solar atmosphere Model (AWSoM) with Observations from the Low Corona to 1 AU
- Multifluid modeling of magnetosonic wave propagation in the solar chromosphere -- effects of impact ionization and radiative recombination
- Flux ropes and dynamics of the heliospheric current sheet
- Implementing the MULTI-VP coronal model in EUHFORIA: test case results and comparisons with the WSA coronal model
- Cosmic Ray Transport in Heliospheric Magnetic Structures: I. Modeling Background Solar Wind Using the CRONOS MHD Code
- Effects of Mesh Topology on MHD Solution Features in Coronal Simulations
- Validation of a wave heated 3D MHD coronal-wind model using Polarized Brightness and EUV observations