论文标题
到E或不向E:全球冠状模型的数值细微差别
To E or not to E: Numerical Nuances of Global Coronal Models
论文作者
论文摘要
近年来,作为预测太阳天气的工具,全球冠状模型的流行持续增加。在高达21.5rsun的域内,使用磁图作为太阳表面的输入来解决冠状结构。理想情况下,这些计算将在太阳能图的每次更新中重复重复,以便可以在ESA建模和数据分析工作组(MADAWG)磁连接工具(http://connect-tool.irap.omp.omp.eu/)中使用它们。因此,至关重要的是这些结果既准确又有效。尽管已经发表了许多工作,但与观察结果相比,这些模型的结果显示了这些模型的结果,但并没有太多讨论实现这些结果所需的复杂数值调整。这些范围从边界条件公式的细节到调整,就像在磁场和速度之间强制执行并行性一样大。通过省略理想MHD中的电场,物理学的描述可能不足,并且可能导致过度扩散和不正确的轮廓。我们制定了内部边界条件,这些条件与其他技术一起减少了人工电场的产生。此外,我们研究了不同的外边界条件公式和网格设计如何影响结果和收敛,特别关注B场的密度和径向分量。对于2008年食物的示例,说明了真实磁MAP驱动的模拟精度的显着提高。
In the recent years, global coronal models have experienced an ongoing increase in popularity as tools for forecasting solar weather. Within the domain of up to 21.5Rsun, magnetohydrodynamics (MHD) is used to resolve the coronal structure using magnetograms as inputs at the solar surface. Ideally, these computations would be repeated with every update of the solar magnetogram so that they could be used in the ESA Modelling and Data Analysis Working Group (MADAWG) magnetic connectivity tool (http://connect-tool.irap.omp.eu/). Thus, it is crucial that these results are both accurate and efficient. While much work has been published showing the results of these models in comparison with observations, not many of it discusses the intricate numerical adjustments required to achieve these results. These range from details of boundary condition formulations to adjustments as large as enforcing parallelism between the magnetic field and velocity. By omitting the electric field in ideal-MHD, the description of the physics can be insufficient and may lead to excessive diffusion and incorrect profiles. We formulate inner boundary conditions which, along with other techniques, reduce artificial electric field generation. Moreover, we investigate how different outer boundary condition formulations and grid design affect the results and convergence, with special focus on the density and the radial component of the B-field. The significant improvement in accuracy of real magnetic map-driven simulations is illustrated for an example of the 2008 eclipse.