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Effect of Flow-Tube Geometry on Solar Wind Properties

机译:流管几何形状对太阳风特性的影响

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摘要

A mathematical description of the solar wind flow-tube geometry is proposed. The expansion factor of the flow tube f(r) (=a/r 2, r is the heliocentric distance and a is the flow-tube cross-section area)increases monotonically from 1 at the coronal base to m at r c, and approaches its asymptotic value f ∞ nearly in a width of2σ c . The flow tube with f m =f infin is demonstrated to be approximately equivalent to that given by Kopp and Holzer (1976) for the fast solar wind, and it presumably represents slow wind tubes as f m is substantially larger than f ∞. In terms of an Alfvén wave-driven solar wind model, the effect of the flow-tube geometry on solar wind properties is examined. It is found that with the same flow conditions at the coronal base an expansion factor which increases monotonically with the radial distance results in a fast solar wind solution, whereas a flow tube which undergoes an expansion-contraction-reexpansion process creates a slow solar wind solution. Among the four flow-tube parameters the maximum expansion factor f m has the strongest effect, and the associated Laval-nozzle formed by the contraction and reexpansion of theflow tube plays a crucial role in determining solar wind properties. It is suggested that one must take the effect of the flow-tube geometry into account while constructing reasonable flow-tube models for the slow solar wind.
机译:提出了关于太阳风流管几何形状的数学描述。流量管的膨胀因子f(r)(= a / r 2 ,r为日心距,a为流量管横截面面积)从冠底的1单调增加到m < / sub>在rc 处,并且几乎以2σc 的宽度接近其渐近值f∞。 fm = f infin 的流管被证明与Kopp和Holzer(1976)给出的关于太阳快风的流量近似相等,并且大概将慢风管表示为fm 明显大于f∞。根据Alfvén波浪驱动的太阳风模型,研究了流管几何形状对太阳风特性的影响。发现在相同的冠状基部流动条件下,随着径向距离单调增加的膨胀系数会导致快速的太阳风解,而经过膨胀-收缩-再膨胀过程的流量管会产生缓慢的太阳风解。在四个流量管参数中,最大膨胀系数f m 影响最大,并且由流量管的收缩和再膨胀形成的相关Laval喷嘴在确定太阳风的性质中起着至关重要的作用。建议在为慢太阳风构建合理的流管模型时,必须考虑流管几何形状的影响。

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  • 来源
    《Astrophysics and Space Science》 |2002年第2期|447-460|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;

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

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  • 正文语种 eng
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