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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Instituto Nacional de Pesquisas Espaciais (INPE), Sao José dos Campos, Sao Paolo, Brazil
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Instituto Nacional de Pesquisas Espaciais (INPE), Sao José dos Campos, Sao Paolo, Brazil

机译:国家空间研究所(INPE),巴西圣保罗,圣若泽杜斯坎普斯

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摘要

Intervals of extreme geomagnetic calm just prior to recurring high-speed-stream-driven storms are noted and studied. These calm intervals may be important for preconditioning the magnetosphere for the ensuing storms. It is argued that this preconditioning causes (1) a decay of the number density of relativistic electrons in the outer radiation belt, (2) a mass loading of the convection of the middle magnetosphere during the early phase of the storms, (3) dumping of the outer electron radiation belt by the formation of a plasmaspheric drainage plume at the onset of the storm, and (4) a contribution to the inner plasma sheet and ring current by the convection of cool dense plasma into the dipole. Calm intervals tend to occur when uncompressed slow wind passes the Earth immediately prior to the CIR. Using 73 years of geomagnetic data, it is shown that the occurrence rate of calms before recurring storms is substantially greater than random occurrence probability would predict, even though the properties of the wind that drives calms before storms are statistically similar to the properties of the wind that drives quiet intervals during solar minimum. The recurrence of storms and calms are studied and it is found that both tend to recur with a 27-day period (strongest during declining phase) and that the persistence of calm recurrence (~3 solar rotations) is greater than the persistence of storm recurrence (~2 solar rotations). An argument is given as to why there is a tendency for calms to occur just prior to high-speed-stream-driven storms.
机译:记录并研究了在反复出现高速气流驱动的风暴之前的极端地磁平静时间间隔。这些平静的间隔对于为随后的暴风雨预备磁层可能很重要。有人认为,这种预处理会导致(1)外辐射带中相对论电子的数量密度下降,(2)风暴早期阶段中磁层对流的质量负荷,(3)倾倒通过在暴风雨开始时形成等离子层流羽形成外部电子辐射带,以及(4)通过冷致密等离子体对流进入偶极子对内部等离子体片和环流的贡献。当未压缩的慢风在CIR之前即将通过地球时,就会出现平静间隔。使用73年的地磁数据显示,即使在暴风雨前驱使平静的风的特性在统计上与风的特性相似,即使在暴风雨前驱使平静的风的性质,在再次发生暴风雨之前的平静的发生率也大大高于随机发生概率的预测。在日照最小时驱动安静的间隔。研究了暴风和平静的复发,发现两者都倾向于以27天的周期复发(下降阶段最强),并且平静复发的持续性(〜3次太阳旋转)大于风暴复发的持续性(〜2个太阳旋转)。对于为什么在高速流驱动的暴风雨之前会出现平静的趋势提出了一个论点。

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