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Solar Convection and Self-Similar Atmosphere's Structures

机译:太阳对流和自相似大气的结构

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We present a new model of large-scale multilayer convection in solar type stars. This model allows us to understand such self-similar structures observed at solar surface as granulation, supergranulation and giant cells. We study the slow-rotated hydrogen star without magnetic field with the spherically-symmetric convective zone. The photon's flux comes to the convectivc zone from the central thermonuclear zone of the star. The interaction of these photons with the fully ionized hydrogen plasma with T > 10~5 K is carried out by the Thompson scattering of photon flux on protons and electrons. Under these conditions plasma is optically thick relative to the Thompson scattering. We find the stationary solution of the convective zone structure. This solution describes the convective layers responsible to the formation of the structures on the star's surface.
机译:我们提出了太阳型恒星中大规模多层对流的新模型。该模型使我们能够理解在太阳表面观察到的自相似结构,如颗粒化,超颗粒化和巨细胞。我们用球对称对流区研究了没有磁场的慢旋转氢星。光子的通量从恒星的中心热核区进入对流区。这些光子与T> 10〜5 K的完全电离氢等离子体的相互作用是通过质子和电子上光子通量的汤普森散射实现的。在这些条件下,相对于汤普森散射,等离子体在光学上较厚。我们找到了对流带结构的固定解。该解决方案描述了对流层,这些对流层负责恒星表面结构的形成。

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