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首页> 外文期刊>The Astrophysical Journal. Supplement Series >TWO-DIMENSIONAL STELLAR EVOLUTION CODE INCLUDING ARBITRARY MAGNETIC FIELDS. II. PRECISION IMPROVEMENT AND INCLUSION OF TURBULENCE AND ROTATION
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TWO-DIMENSIONAL STELLAR EVOLUTION CODE INCLUDING ARBITRARY MAGNETIC FIELDS. II. PRECISION IMPROVEMENT AND INCLUSION OF TURBULENCE AND ROTATION

机译:包括任意磁场的二维恒星演化代码。二。精确度的提高和湍流和旋转的融合

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In the second paper of this series we pursue two objectives. First, in order to make the code more sensitive to small effects, we remove many approximations made in Paper I. Second, we include turbulence and rotation in the two-dimensional framework. The stellar equilibrium is described by means of a set of five differential equations, with the introduction of a new dependent variable, namely the perturbation to the radial gravity, that is found when the nonradial effects are considered in the solution of the Poisson equation. Following the scheme of the first paper, we write the equations in such a way that the two-dimensional effects can be easily disentangled. The key concept introduced in this series is the equipotential surface. We use the underlying cause-effect relation to develop a recurrence relation to calculate the equipotential surface functions for uniform rotation, differential rotation, rotation-like toroidal magnetic fields, and turbulence. We also develop a more precise code to numerically solve the two-dimensional stellar structure and evolution equations based on the equipotential surface calculations. We have shown that with this formulation we can achieve the precision required by observations by appropriately selecting the convergence criterion. Several examples are presented to show that the method works well. Since we are interested in modeling the effects of a dynamo-type field on the detailed envelope structure and global properties of the Sun, the code has been optimized for short timescales phenomena (down to 1 yr). The time dependence of the code has so far been tested exclusively to address such problems.
机译:在本系列的第二篇文章中,我们追求两个目标。首先,为了使代码对较小的影响更加敏感,我们删除了论文I中的许多近似方法。其次,我们在二维框架中加入了湍流和旋转。恒星平衡是通过一组五个微分方程来描述的,其中引入了一个新的因变量,即径向重力的扰动,这是在泊松方程的解中考虑非径向效应时发现的。按照第一篇论文的方案,我们以使二维效应易于解开的方式编写方程式。本系列中引入的关键概念是等电位面。我们使用潜在的因果关系来建立递归关系,以计算均匀旋转,微分旋转,类似旋转的环形磁场和湍流的等势面函数。我们还开发了更精确的代码,以基于等势面计算对二维恒星结构和演化方程进行数值求解。我们已经表明,采用这种公式,可以通过适当选择收敛准则来达到观测所要求的精度。给出了几个例子,表明该方法行之有效。由于我们有兴趣对发电机类型的场对太阳的详细包络结构和全局特性的影响进行建模,因此代码已针对短时标现象(长达1年)进行了优化。到目前为止,代码的时间依赖性已经过专门测试以解决此类问题。

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