论文标题

全球阳性动力学和发电机的观察和建模方面的进步和挑战

Advances and Challenges in Observations and Modeling of the Global-Sun Dynamics and Dynamo

论文作者

Kosovichev, A. G., Guerrero, G., Stejko, A. M., Pipin, V. V., Getling, A. V.

论文摘要

计算热物理学已经阐明了太阳内的基本物理过程,例如磁场的差异旋转,子午循环和发电。然而,尽管取得了很大的进步,但3D MHD模拟的当前结果仍然远非繁殖性震震的推断和表面观测。原因是太阳能动力学的多尺度性质,涵盖了广泛的尺度,无法用当前的计算资源来解决。在这种情况下,基于小规模的湍流和大规模动力学的分离,通过平均场方法取得了重大进展。平均场模拟可以在定性和定量上重现太阳观测,并发现新现象。但是,它们并未揭示大规模对流,太阳磁性循环以及导致黑子和太阳喷发的磁自组织的复杂物理。因此,开发这些方法的协同作用似乎是一项必要但非常具有挑战性的任务。

Computational heliophysics has shed light on the fundamental physical processes inside the Sun, such as the differential rotation, meridional circulation, and dynamo-generation of magnetic fields. However, despite the substantial advances, the current results of 3D MHD simulations are still far from reproducing helioseismic inferences and surface observations. The reason is the multi-scale nature of the solar dynamics, covering a vast range of scales, which cannot be solved with the current computational resources. In such a situation, significant progress has been achieved by the mean-field approach, based on the separation of small-scale turbulence and large-scale dynamics. The mean-field simulations can reproduce solar observations, qualitatively and quantitatively, and uncover new phenomena. However, they do not reveal the complex physics of large-scale convection, solar magnetic cycles, and the magnetic self-organization that causes sunspots and solar eruptions. Thus, developing a synergy of these approaches seems to be a necessary but very challenging task.

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