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Efficiency of solar wind energy coupling to the ionosphere

机译:太阳能风能耦合效率电离层

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We present a statistical investigation into the variations of the ionospheric energy coupling efficiencies with the solar wind energy input, the interplanetary magnetic field (IMF) clock angle and the solar wind dynamic pressure. The ionospheric energy coupling efficiencies are defined as the ratios of the ionospheric energy deposition(namely auroral precipitation, Joule heating, and their total)to the solar wind energy input. We find that the ionospheric energy coupling efficiencies decrease exponentially with the solar wind energy input. Moreover, it is the same case under geomagnetic storm conditions. Our results also show that the energy coupling efficiencies are dependent on the IMF clock angle and almost independent of the solar wind dynamic pressure. These results will help us estimate and predict energy transfer from the solar wind to the thermosphereionosphere system under extreme space weather conditions, particularly severe geomagnetic storms.
机译:我们提出一个统计调查电离层的变化能量耦合效率与太阳风能量输入,行星际磁场(IMF)的时钟动态压力角和太阳风。电离层的能量耦合效率定义为电离层能量的比率淀积(即极光降水、焦耳加热,其总)太阳能风能输入。耦合效率降低指数太阳能风能输入。在地磁风暴条件下相同的情况。结果还表明,能量耦合效率依赖于IMF时钟角而且几乎独立于太阳风的动态压力。预测从太阳风能量转移thermosphereionosphere系统在极端空间天气条件,尤其严重地磁风暴。

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