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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Response of the magnetic field in the geosynchronous orbit to solar wind dynamic pressure pulses
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Response of the magnetic field in the geosynchronous orbit to solar wind dynamic pressure pulses

机译:地球同步轨道中的磁场对太阳风动压力脉冲的响应

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摘要

We do a statistical survey of solar wind dynamic pressure (P d ) pulses and geosynchronous magnetic fields observed between 1998 and 2005. In geomagnetic quiet times with Dst > ?50 nT, we find 111 solar wind dynamic pressure pulses which produce geosynchronous magnetic field responses. These responses are often observed by two or three GOES spacecraft at different local times in geosynchronous orbit. The magnitudes of the geosynchronous magnetic field changes (dB z ) have a peak near the noon meridian, similar to the results obtained in the study of the response of the geosynchronous field to the large and sharp solar wind dynamic pressure variations. However, the relative change of the geosynchronous magnetic field dB z /AV-B z (where AV-B z is the average of the geosynchronous magnetic field B z observed during the response to the pressure pulse) depends weakly on the local time; thus the change of B z (dB z ) is proportional to the average field (AV-B z ). As the magnitude of the relative change of solar wind dynamic pressure (dP d /P d ) increases, the rate of geosynchronous magnetic field variation increases correspondingly. These results imply that the magnitude of the geosynchronous magnetic field response could be determined by AV-B z . In addition, the interplanetary field orientation does not affect the response significantly. Using an MHD code which models the global behavior of the solar wind-magnetosphere-ionosphere system, we reproduce the main characteristics of the observations.
机译:我们对1998年至2005年间观测到的太阳风动压力脉冲和地球同步磁场进行了统计调查。在Dst>?50 nT的地磁静默时间内,我们发现了111个产生地球同步磁场响应的太阳风动压力脉冲。 。这些响应通常由两个或三个GOES航天器在地球同步轨道上的不同本地时间观察到。地球同步磁场变化的幅度(dB z)在正午子午线附近有一个峰值,与研究地球同步磁场对大而尖锐的太阳风动态压力变化的响应的研究结果相似。但是,地球同步磁场dB z / AV-B z的相对变化(其中AV-B z是对压力脉冲的响应期间观测到的地球同步磁场B z的平均值)在很大程度上取决于本地时间。因此B z(dB z)的变化与平均场(AV-B z)成正比。随着太阳风动压相对变化量(dP d / P d)的增加,地球同步磁场的变化率也相应增加。这些结果表明,可以通过AV-B z确定地球同步磁场响应的大小。此外,行星际场的方向不会显着影响响应。使用MHD代码模拟太阳风-磁层-电离层系统的整体行为,我们重现了观测的主要特征。

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