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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ion-neutral coupling effects on low-latitude thermospheric evening winds
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Ion-neutral coupling effects on low-latitude thermospheric evening winds

机译:离子中性耦合对低纬热圈晚风的影响

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We examine the forces that determine zonal wind structure in the low-latitude evening thermosphere and its relation with ion-neutral coupling. These winds drive the evening F region dynamo that affects the equatorial ionization anomaly (EIA) and the generation of plasma irregularities. Forces are calculated using the Thermosphere-Ionosphere-Electrodynamics General Circulation Model coupled with the Global Ionosphere-Plasmasphere model. At 19 LT, the horizontal pressure gradient dominates the net acceleration of neutral winds below ~220 km, while it tends to be offset by ion drag and viscosity higher up. The eastward pressure-gradient acceleration above 200 km increases approximately linearly with height and tends to be similar for different latitudes and different levels of solar activity. The pressure-gradient and ion-drag forces in the central F region approximately balance for field lines that pass through the EIA. Viscosity is an important additional force at non-EIA latitudes and in the bottomside and topside EIA ionosphere. An increase in E region drag on plasma convection due to increased nighttime ionization causes both the ion and neutral velocities in the F region to decrease, while the velocity difference tends to be maintained. The presence of a low-latitude evening time vertical shear in the zonal wind is associated primarily with a strong eastward pressure-gradient acceleration at high altitude that reverses the daytime westward wind and a weak low-altitude pressure-gradient acceleration of either eastward or westward direction that fails to reverse the low-altitude westward wind present in the afternoon.
机译:我们研究了确定低纬度晚热层中纬向风结构的力及其与离子中性耦合的关系。这些风驱使晚上的F区发电机运转,从而影响赤道电离异常(EIA)和等离子体不规则现象的产生。使用热球-电离层-电动力学通用环流模型以及全局电离层-等离子层模型来计算力。在19 LT处,水平压力梯度在〜220 km以下的中性风的净加速度中占主导地位,而它倾向于被离子阻力和更高的粘度所抵消。 200 km以上的东向压力梯度加速度随高度近似线性增加,并且在不同纬度和不同水平的太阳活动下趋于相似。对于穿过EIA的磁力线,中心F区域中的压力梯度和离子拖曳力大致平衡。在非EIA纬度以及底面和顶面EIA电离层中,粘度是重要的附加力。由于夜间电离的增加,等离子体对流中E区阻力的增加导致F区中的离子速度和中性速度均降低,而速度差趋于保持。纬向风中低纬度夜间垂直切变的存在主要与高海拔地区的强东向压力梯度加速度有关,该加速度会逆转白天的西风,而弱向或向东或西向的低海拔压力梯度加速度会降低不能逆转下午出现的低空西风的方向。

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