...
首页> 外文期刊>The Astrophysical journal >PREDICTING THE SUN'S POLAR MAGNETIC FIELDS WITH A SURFACE FLUX TRANSPORT MODEL
【24h】

PREDICTING THE SUN'S POLAR MAGNETIC FIELDS WITH A SURFACE FLUX TRANSPORT MODEL

机译:利用表面通量传输模型预测太阳的极磁场

获取原文

摘要

The Sun's polar magnetic fields are directly related to solar cycle variability. The strength of the polar fields at the start (minimum) of a cycle determine the subsequent amplitude of that cycle. In addition, the polar field reversals at cycle maximum alter the propagation of galactic cosmic rays throughout the heliosphere in fundamental ways. We describe a surface magnetic flux transport model that advects the magnetic flux emerging in active regions (sunspots) using detailed observations of the near-surface flows that transport the magnetic elements. These flows include the axisymmetric differential rotation and meridional flow and the non-axisymmetric cellular convective flows (supergranules), all of which vary in time in the model as indicated by direct observations. We use this model with data assimilated from full-disk magnetograms to produce full surface maps of the Sun's magnetic field at 15?minute intervals from 1996 May to 2013 July (all of sunspot cycle 23 and the rise to maximum of cycle 24). We tested the predictability of this model using these maps as initial conditions, but with daily sunspot area data used to give the sources of new magnetic flux. We find that the strength of the polar fields at cycle minimum and the polar field reversals at cycle maximum can be reliably predicted up to 3?yr in advance. We include a prediction for the cycle 24 polar field reversal.
机译:太阳的极磁场与太阳周期的可变性直接相关。循环开始时(最小)的极场强度决定了该循环的后续振幅。此外,最大周期的极场反转以根本方式改变了银河宇宙射线在整个太阳圈的传播。我们描述了一个表面磁通量传输模型,该模型使用对传输磁性元素的近地表面流的详细观察来平缓出现在活动区域​​(黑子)中的磁通量。这些流动包括轴对称的差动旋转和子午流以及非轴对称的细胞对流(超颗粒),所有这些在模型中随时间变化,如直接观察所表明的那样。从1996年5月到2013年7月(所有太阳黑子周期23和上升到最大周期24),我们使用该模型与从全磁盘磁图得到的数据一起以15分钟的间隔生成太阳磁场的完整表面图。我们使用这些图作为初始条件测试了该模型的可预测性,但使用每日黑子面积数据提供了新的磁通量来源。我们发现,在最短3 yr之前,可以可靠地预测最小循环时的极场强度和最大循环时的极场反转。我们包括对周期24极性反转的预测。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号