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Time scale of the largest imaginable magnetic storm

机译:可以想象的最大磁暴的时间尺度

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The depression of the horizontal magnetic field at Earth's equator for the largest imaginable magnetic storm has been estimated (Vasyliunas, 2011a) as -Dst ~ 2500 nT, from the assumption that the total pressure in the magnetosphere (plasma plus magnetic field perturbation) is limited, in order of magnitude, by the minimum pressure of Earth's dipole field at the location of each flux tube. The obvious related question is how long it would take the solar wind to supply the energy content of this largest storm. The maximum rate of energy input from the solar wind to the magnetosphere can be evaluated on the basis either of magnetotail stress balance or of polar cap potential saturation, giving an estimate of the time required to build up the largest storm, which (for solar-wind and magnetospheric parameter values typical of observed superstorms) is roughly between ~2 and ~6 h.
机译:假设磁层的总压力(等离子加上磁场的扰动)是有限的,那么对于最大可想象的磁暴,地球赤道的水平磁场的压降估计为-Dst〜2500 nT(Vasyliunas,2011a)。在数量级上,取决于每个磁通管所在位置的地球偶极子场的最小压力。一个明显相关的问题是,太阳风将需要多长时间才能提供这场最大的风暴的能量。从太阳风到磁层的最大能量输入速率可以根据磁尾应力平衡或极帽势饱和来评估,从而估算出建立最大风暴所需的时间,对于观测到的超级风暴的典型风和磁层参数值大约在2至6小时之间。

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