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X-Winds in Action

机译:X-Winds在行动

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摘要

The interaction of accretion disks with the magnetospheres of young stars can produce X-winds and funnel flows. With the assumption of axial symmetry and steady state flow, the problem can be formulated in terms of quantities that are conserved along streamlines, such as the Bernoulli integral (BI), plus a partial differential equation (PDE), called the Grad-Shafranov equation (GSE), that governs the distribution of streamlines in the meridional plane. The GSE plus BI yields a PDE of mixed type, elliptic before critical surfaces where the flow speed equals certain characteristic wave speeds are crossed and hyperbolic afterward. The computational difficulties are exacerbated by the locations of the critical surfaces not being known in advance. To overcome these obstacles, we consider a variational principle by which the GSE can be attacked by extremizing an action integral, with all other conserved quantities of the problem explicitly included as part of the overall formulation. To simplify actual applications we adopt the cold limit of a negligibly small ratio of the sound speed to the speed of Keplerian rotation in the disk where the X-wind is launched. We also ignore the obstructing effects of any magnetic fields that might thread a disk approximated to be infinitesimally thin. We then introduce trial functions with adjustable coefficients to minimize the variations that give the GSE. We tabulate the resulting coefficients so that other workers can have analytic forms to reconstruct X-wind solutions for various astronomical, cosmochemical, and meteoritical applications.
机译:吸积盘与年轻恒星磁层的相互作用会产生X形风和漏斗流。在轴向对称和稳态流动的假设下,可以根据沿流线守恒的量来表达问题,例如伯努利积分(BI)加上偏微分方程(PDE)(称为Grad-Shafranov方程) (GSE),它控制子午线中流线的分布。 GSE加BI会生成混合类型的PDE,在临界表面之前为椭圆形,在该临界表面处流速等于某些特征波速,然后为双曲线。预先不知道的关键表面的位置加剧了计算困难。为了克服这些障碍,我们考虑了一种变分原理,可以通过极端化一个动作积分来攻击GSE,并将所有其他守恒量的问题明确纳入整体表述。为了简化实际应用,我们对发声X盘的磁盘采用了声音速度与开普勒旋转速度的很小比例的冷限制。我们还忽略了可能使近似无限薄的磁盘穿过的任何磁场的阻碍作用。然后,我们引入系数可调整的试验函数,以最大程度地减少产生GSE的变化。我们将所得系数制成表格,以便其他工作人员可以具有解析形式,以重建X风解决方案,以用于各种天文,宇宙化学和气象应用。

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