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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-latitude total electron content enhancement at low geomagnetic activity observed over Japan
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Low-latitude total electron content enhancement at low geomagnetic activity observed over Japan

机译:低纬度总电子含量提高在日本低地磁活动观察

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Numerous total electron content (TEC) values derived from GPS signals are averaged within 1.5° × 1.5° cells in a 1-hour time frame, and the relative deviations of these average values from corresponding monthly medians are used to produce latitude-time plots over Japan. The paper analyzes the appearance and development of enhancements of TEC of equatorial origin (ETEs), occurring outside initial and main phases of geomagnetic storms. ETE structures appear mainly as single-crest structures in the evening hours local time, with TEC peak around 1900 LT. TEC usually decreases with latitude, and the structures disappear below 40°N. In some cases the TEC peak is found above the plot boundary of 24°N, as depletions toward the equator are also observed. The observed enhanced structures are linked to the well-known evening prereversal enhancement of ion drift in the equatorial F region. Double-crest ETEs are also observed, with the second peak occurring in early morning hours. Most of the ETE events appear in periods of low geomagnetic activity, 1–3 days after the main phase of the storms. In some cases the time of rising of ETE structures coincides with the increase of interplanetary electric field (IEF), a fact showing the importance of directly penetrating electric field in formation of ETEs. Often, ETEs appear repeatedly in 2 or 3 consecutive days. It is supposed that planetary atmospheric waves are responsible for this phenomenon. Most of the observed features of ETEs can be explained by the published results of simulations of the coupled thermosphere-ionosphere-plasmasphere (CTIP) model and the thermosphere/ionosphere/electrodynamic general circulation model (TIEGCM). It is suggested that ETE structures are produced mainly by a disturbance winds dynamo electric field, built up after the main phase of the storms. Some ETE events, appearing at the end of a prolonged period of low geomagnetic activity, can be linked to directly penetrating IEF in equatorial ionosphere. The intensity of these electric fields is much smaller than is needed to explain the observations.
机译:无数的总电子含量(TEC)值来自GPS信号平均在1.5°×1.5°细胞在一个小时的时间内,和这些平均值的相对偏差相应的月度生产使用中位数在日本latitude-time情节。分析的出现和发展增强TEC的赤道起源(几个),外发生的初始和主要阶段地磁风暴。在晚上小时single-crest结构当地时间,TEC峰值约1900 TEC中尉通常随纬度,结构消失低于40°N。上面的TEC峰发现情节的边界24°N,向赤道也消逝观察到。著名的晚间prereversal有关增强的离子漂移赤道F地区。第二个峰值发生在凌晨。大多数的疾病事件出现在较低的时候地磁活动,主后1 - 3天阶段的风暴。于高频结构伴随着上升增加了星际电场(),一个事实直接显示的重要性渗透形成的电场会好的。通常,都反复出现在2或3连续两天。大气波负责的现象。发表的结果可以解释的吗模拟的耦合thermosphere-ionosphere-plasmasphere (CTIP)模型和热大气层电离层/电动环流模式(TIEGCM)。建议主要生产高频结构电场干扰风力发电机,建立后的主要阶段的风暴。事件,出现在长时间的结束低的地磁活动的时期,可以联系直接穿透在赤道电离层。远小于字段需要解释观察。

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