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Vortices in simulations of solar surface convection

机译:太阳表面对流模拟中的涡旋

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摘要

We report on the occurrence of small-scale vortices in simulations of the convective solar surface. Using an eigenanalysis of the velocity gradient tensor, we find the subset of high-vorticity regions in which the plasma is swirling. The swirling regions form an unsteady, tangled network of filaments in the turbulent downflow lanes. Near-surface vertical vortices are underdense and cause a local depression of the optical surface. They are potentially observable as bright points in the dark intergranular lanes. Vortex features typically exist for a few minutes, during which they are moved and twisted by the motion of the ambient plasma. The bigger vortices found in the simulations are possibly, but not necessarily, related to observations of granular-scale spiraling pathlines in “cork animations” or feature tracking.
机译:我们报告了对流太阳表面模拟中小规模涡旋的发生。使用速度梯度张量的特征分析,我们找到了等离子体在其中旋转的高涡度区域的子集。涡流区域在湍流的下行通道中形成了一个不稳定的,缠结的细丝网络。近表面的垂直涡流很密集,会导致光学表面局部凹陷。它们可能在黑暗的粒间通道中作为亮点被观察到。涡旋特征通常存在几分钟,在此期间,涡旋特征会因周围等离子的运动而移动和扭曲。在模拟中发现的较大旋涡可能但不一定与“软木动画”或特征跟踪中的颗粒状螺旋路径的观察有关。

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