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A Two-Dimensional Alfvén-Wave-Driven Solar Wind Model

机译:二维Alfvén波驱动的太阳风模型

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摘要

This paper presents a two-dimensional, Alfvén-wave-driven solar wind model, in which the wave energy is assumed to cascade from the low-frequency Alfvén waves to high-frequency ion cyclotron waves and to be transferred to the solar wind protons by cyclotron resonance at the Kolmogorov rate. A typical structure in the meridional plane consisting of a coronal streamer near the Sun, a fast wind in high latitudes, and a slow wind across the heliospheric current sheet, is found. The fast wind obtained in the polar region is essentially similar to that derived by previous one-dimensional flow-tube models, and its density profile in the vicinity of the Sun roughly matches relevant observations. The proton conditions at 1 AU are also consistent with observations for both the fast and slow winds. The Alfvén waves appear in the fast- and slow-wind regions simultaneously and have comparable amplitudes, which agrees with Helios observations. The acceleration and heating of the solar wind by the Alfvén waves are found to occur mainly in the near-Sun region. It is demonstrated in terms of one-dimensional calculations that the distinct properties of the fast and slow winds are mainly attributed to different geometries of the flow tubes associated with the two sorts of winds. In addition, the 2-D and 1-D simulations give essentially the same results for both the fast and the slow winds.
机译:本文提出了一个二维的Alfvén波驱动的太阳风模型,其中假定波能从低频Alfvén波级联到高频离子回旋加速器波,然后通过回旋加速器以Kolmogorov速率共振。发现在子午面的典型结构包括太阳附近的冠状飘带,高纬度的快速风和横越日球层的慢风。在极地地区获得的快速风与以前的一维流管模型推导的风基本相似,并且其在太阳附近的密度分布大致与相关观测值相匹配。 1 AU的质子条件也与快风和慢风的观测结果一致。 Alfvén波同时出现在快风和慢风区域,并且具有可比较的振幅,这与Helios的观测结果一致。发现Alfvén波对太阳风的加速和加热主要发生在近太阳区域。通过一维计算证明,快风和慢风的不同属性主要归因于与两种风相关的流量管的不同几何形状。此外,无论是快风还是慢风,二维和一维模拟都给出了基本相同的结果。

著录项

  • 来源
    《Solar Physics 》 |2001年第2期| 371-384| 共14页
  • 作者

    Y. Chen; Y.Q. Hu;

  • 作者单位

    Department of Earth and Space Sciences University of Science and Technology of China;

    Department of Earth and Space Sciences University of Science and Technology of China;

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  • 正文语种 eng
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