Dynamics of Large-Scale Solar Flows

被引:0
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作者
Hideyuki Hotta
Yuto Bekki
Laurent Gizon
Quentin Noraz
Mark Rast
机构
[1] Nagoya University,Institute for Space
[2] Max-Planck-Institut für Sonnensystemforschung,Earth Environmental Research
[3] Georg-August-Universtät Göttingen,Institut für Astrophysik
[4] University of Oslo,Rosseland Centre for Solar Physics
[5] University of Oslo,Institute of Theoretical Astrophysics
[6] University of Colorado,Department of Astrophysical and Planetary Sciences, Laboratory for Atmospheric and Space Physics
来源
Space Science Reviews | 2023年 / 219卷
关键词
Convection; Differential rotation; Meridional flow; Helioseismology; Numerical simulation;
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摘要
The Sun’s axisymmetric large-scale flows, differential rotation and meridional circulation, are thought to be maintained by the influence of rotation on the thermal-convective motions in the solar convection zone. These large-scale flows are crucial for maintaining the Sun’s global magnetic field. Over the last several decades, our understanding of large-scale motions in the Sun has significantly improved, both through observational and theoretical efforts. Helioseismology has constrained the flow topology in the solar interior, and the growth of supercomputers has enabled simulations that can self-consistently generate large-scale flows in rotating spherical convective shells. In this article, we review our current understanding of solar convection and the large-scale flows present in the Sun, including those associated with the recently discovered inertial modes of oscillation. We discuss some issues still outstanding, and provide an outline of future efforts needed to address these.
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