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Solar cycle variation of the interplanetary forward shock drivers observed at 1 AU

机译:1 AU观测到的行星际前向冲击驱动器的太阳周期变化

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摘要

Forecasting space weather more accurately from solar observations requires an understanding of the variations in physical properties of interplanetary (IP) shocks as solar activity changes. We examined the characteristics (occurrence rate, physical parameters, and types of shock driver) of IP shocks. During the period of 1995-2001, a total of 249 forward IP shocks were observed. In calculating the shock parameters, we used the solar wind data from Wind at the solar minimum period (1995-1997) and from ACE since 1998 including the solar maximum period (1999-2001). Most of IP shocks (68%) are concentrated in the solar maximum period. The values of physical quantities of IP shocks, such as the shock speed, the sonic Mach number, and the ratio of plasma density compression, are larger at solar maximum than at solar minimum. However, the ratio of IMF compression is larger at solar minimum. The IP shock drivers are classified into four groups: magnetic clouds (MCs), ejecta, high speed streams (HSSs), and unidentified drivers. The MC is the most dominant and strong shock driver and 150 out of total 249 IP shocks are driven by MCs. The MC is a principal and very effective shock driver not only at solar maximum but also at solar minimum, in contrast to results from previous studies, where the HSS is considered as the dominant IP shock driver.
机译:通过太阳观测更准确地预测太空天气需要了解随着太阳活动的变化行星际(IP)冲击的物理性质的变化。我们检查了IP冲击的特征(发生率,物理参数和冲击驱动器的类型)。在1995年至2001年期间,共观察到249次IP向前冲击。在计算冲击参数时,我们使用了太阳风最短时间段(1995-1997年)的风能数据和1998年以来ACE的太阳风数据,包括太阳最大时长(1999-2001年)。大部分IP冲击(68%)都集中在太阳最大的时期。 IP冲击的物理量值,例如冲击速度,声马赫数和等离子密度压缩比,在太阳最大时比在太阳最小时大。但是,IMF压缩比在太阳最低时较大。 IP冲击驱动程序分为四类:磁云(MC),弹出,高速流(HSS)和未识别的驱动程序。 MC是最主要和最强大的冲击驱动器,在249个IP冲击中,有150个是由MC驱动的。与以前的研究结果相反,MC不仅在太阳最大时而且在太阳最小时都是主要且非常有效的冲击驱动器,而以前的研究结果认为,HSS被认为是主要的IP冲击驱动器。

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