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Predicting the Arrival Time of Shock Passages at Earth

机译:预测地球上冲击波的到达时间

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The purpose of this parametric study is to predict the arrival time at Earth of shocks due to disturbances observed on the Sun. A 3D magnetohydrodynamic (MHD) simulation code is used to simulate the evolution of these disturbances as they propagate out to 1 AU. The model in Han, Wu and Dryer (1988) uses solar data for input at 0.08 AU (18 solar radii). The initial shock speed (ISS) is assumed to be constant from the corona to 0.08 AU. We investigate how variations of this ISS affect the arrival times of the shock at Earth. This basic parametric study, however, does not consider inhomogeneous background solar wind structures such as corotating interaction regions and their precursor stream–stream interactions, nor interplanetary manifestations of complex coronal mass ejecta such as magnetic clouds. In the latter case, only their associated shocks are considered. Because the ambient (pre-existing background) solar wind speed is known to affect the shock arrival time at 1 AU, we also simulated events with various background solar wind speeds (BSWS) to investigate this effect. The results show that the shock arrival time at Earth depends on the BSWS, the speed of solar disturbances, their size, and their source location at the Sun. However, it is found that for a sufficiently large momentum input, the shock arrival time at Earth is not significantly affected by the pre-existing solar wind speed.
机译:此参数研究的目的是预测由于在太阳上观察到的干扰而导致的冲击到达地球的时间。使用3D磁流体动力学(MHD)模拟代码来模拟这些干扰传播到1 AU时的演变。 Han,Wu和Dryer(1988)中的模型使用太阳数据作为0.08 AU(18太阳半径)的输入。假设初始电击速度(ISS)从电晕到0.08 AU是恒定的。我们研究这种国际空间站的变化如何影响电击到达地球的时间。但是,这项基本的参数研究没有考虑不均匀的背景太阳风结构(例如,同向相互作用的区域及其前体流-流之间的相互作用),也没有考虑诸如日冕云的复杂日冕物质抛射的行星际表现。在后一种情况下,仅考虑其相关的冲击。由于已知环境(预先存在的背景)太阳风速会影响1 AU时的电击到达时间,因此我们还以各种背景太阳风速(BSWS)模拟了事件,以研究这种影响。结果表明,冲击波到达地球的时间取决于BSWS,太阳干扰的速度,它们的大小以及它们在太阳上的源位置。然而,发现对于足够大的动量输入,到达地球的冲击到达时间不受预先存在的太阳风速的影响。

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  • 来源
    《Solar Physics 》 |2005年第2期| 371-386| 共16页
  • 作者单位

    Center for Space Plasma and Aeronomic Research The University of AlabamaLaboratory for Extraterrestrial Physics NASA/GSFC;

    Exploration Physics International Inc.;

    Laboratory for Extraterrestrial Physics NASA/GSFCL-3 Communications EER Systems Inc.;

    Exploration Physics International Inc.NOAA Space Environment Center;

    NOAA Space Environment Center;

    NOAA Space Environment Center;

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