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Deflection flows ahead of ICMEs as an indicator of curvature and geoeffectiveness

机译:偏转流之前,icm的指标曲率和geoeffectiveness

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We examine the upstream meridional deflection flows of interplanetary coronal mass ejections (ICMEs) in an effort to investigate their cross-sectional shape and the magnetic field orientation in their sheath regions. Eight out of 11 magnetic clouds (MCs) near solar minimum identified for the curvature study are concave outward as indicated by the elevation angle of the MC normal with respect to the solar equatorial plane; an inverse correlation is observed between the meridional deflection flow and the spacecraft latitude for these concave-outward MCs, which suggests that the upstream plasma is deflected toward the equatorial plane. MHD simulations, however, show that the meridional deflection flow moves poleward for a concave-outward CME. The poleward flow deflection is observed only ahead of convex-outward MCs. Possibilities leading to this discrepancy are discussed. The deflection flow speed in sheath regions of ICMEs increases with the ICME speed relative to the ambient solar wind, which together with the coupling between the meridional magnetic field and deflection flow yields a positive linear correlation between the sheath meridional field and the ICME relative speed. This empirical relationship could predict the sheath meridional field based on the observed CME speed, which may be useful for space weather forecasting as ICME sheaths are often geoeffective. Implications of the deflection flows and ICME curvature are also discussed in terms of magnetic reconnection and particle acceleration in ICME sheaths.
机译:我们检查上游子午偏转星际日冕物质抛射的流动(icm),以调查他们的横断面形状和磁场鞘区域的定位。11太阳附近的磁云(MCs)确定研究凹曲率向外的仰角表示MC正常的太阳赤道平面;观察经向挠度之间的流动并为这些飞船纬度concave-outward MCs,这表明上游等离子体向偏转赤道平面。子午流偏转的动作concave-outward CME向极。流偏转只提前观察convex-outward MCs。差异进行了讨论。在icm鞘地区增加速度ICME速度相对于环境的太阳能风,这之间的耦合在一起经向磁场和偏转流收益率之间存在一种正线性相关鞘子午场和ICME相对的速度。基于观察到的鞘子午场芝加哥商品交易所的速度,这对空间天气可能有用ICME鞘通常预测geoeffective。流和ICME曲率进行了讨论磁场重联的条款和粒子加速ICME鞘。

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