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Magnetopause inflation under radial IMF: Comparison of models

机译:径向IMF下的绝经期膨胀:模型比较

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AbstractThe solar wind with the radial interplanetary magnetic field (IMF) flowing around the Earth's magnetosphere can result in significant decrease of a total pressure in the magnetosheath that was directly observed by Time History of Events and Macroscale Interactions during Substorms satellites. Observations also showed that the dayside magnetosphere enlarged and the magnetopause inflated far away from the Earth that differs from the classical hydrodynamic case. Full understanding of the magnetosphere interaction with such “radial” flow, is far from completeness. One of the reasons is a quantitative uncertainty in description of this effect. We have performed a comparative analysis of 14 magnetopause models in order to estimate their prediction capabilities under various solar wind pressures and in particular under very low pressures during the time intervals of quasi-radial IMF orientation. We have found that only 4 out of 14 models allow predicting the magnetopause under extremely low pressures and, hence, can be useful for quantitative estimation of the magnetopause expansion under quasi-radial IMF orientation. Those models are characterized by relatively large power index α in the pressure balance; that is, α = 1/5.2 ≈ 0.192 for 3 out of 4 models.
机译:摘要绕行星磁层流过的径向行星际磁场(IMF)产生的太阳风会导致磁荒中的总压力显着下降,这是通过亚暴卫星期间事件的时间历史和宏观尺度相互作用直接观察到的。观测结果还表明,白天的磁层扩大了,磁层顶膨胀了,离地球很远,这与经典的流体动力情况不同。完全了解磁层与这种“径向”流的相互作用远非完整。原因之一是对此影响的描述存在定量不确定性。我们已经对14个绝经模型进行了比较分析,以估计它们在各种太阳风压力下,特别是在准径向IMF定向时间间隔内在非常低的压力下的预测能力。我们发现,在14个模型中,只有4个模型可以预测极低压力下的绝经期,因此可用于定量估计在准径向IMF定向下的绝经期扩张。这些模型的特点是压力平衡中的功率指数α相对较大。也就是说,对于4个模型中的3个,α= 1 / 5.2≈0.192。

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