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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Topside ionospheric effective scale heights (HT) derived with ROCSAT-1 and ground-based ionosonde observations at equatorial and midlatitude ' stations
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Topside ionospheric effective scale heights (HT) derived with ROCSAT-1 and ground-based ionosonde observations at equatorial and midlatitude ' stations

机译:上部电离层高度有效的规模(HT)ROCSAT-1和地面ionosonde派生而来在赤道和中间纬度观测站

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In this study we propose the assimilation of topside in situ electron density data from the Republic of China Satellite (ROCSAT-1) along with the ionosonde measurements for accurate determination of topside ionospheric effective scale heights (HT) using an a-Chapman function. The reconstructed topside electron density profiles using these scale heights exhibit an excellent similitude with Jicamarca incoherent scatter radar (ISR) profiles and are much better representations than the existing methods of Reinisch-Huang method and/or the empirical International Reference Ionosphere-2007 model. The main advantage with this method is that it allows the precise determination of the effective scale height (HT) and the topside electron density profiles at a dense network of ionosonde/Digisonde stations where no ISR facilities are available. The demonstration of the method is applied by investigating the diurnal, seasonal, and solar activity variations of HT over the dip-equatorial station Jicamarca and the midlatitude station Grahamstown. The diurnal variation of scale heights over Jicamarca consistently exhibits a morning time descent followed by a minimum around 0700-0800 LT and a pronounced maximum at noon during all the seasons of both high and moderate solar activity periods. Further, the scale heights exhibit a secondary maximum during the postsunset hours of equinoctial and summer months, whereas the postsunset peak is absent during the winter months. These typical features are further investigated using the topside ion properties obtained by ROCSAT-1 as well as Sami2 is Another Model of the Ionosphere (SAMI2) model simulations. The results consistently indicate that the diurnal variation of the effective scale height (HT) does not closely follow the plasma temperature variation and at equatorial latitudes is largely controlled by the vertical E x B drift.
机译:在本研究中我们提出的同化上部原位电子密度的数据中国卫星(ROCSAT-1)ionosonde测量准确确定上部电离层有效规模高度(HT)使用一个a-Chapman函数。重建的上部电子密度使用这些规模高度展览一个概要文件优秀的相似Jicamarca语无伦次散射雷达(ISR)概要和要好得多比现有的方法表示Reinisch-Huang方法和/或经验国际参考电离层- 2007模型。这种方法的主要优点是它允许有效的精确测定规模高度(HT)和上部电子密集的网络密度资料ionosonde / Digisonde站没有ISR的地方功能是可用的。调查的方法昼夜、季节和太阳活动变化HT的Jicamarca dip-equatorial站和中间纬度站观光业。在Jicamarca昼夜变化规模高度持续展览一个早上时间下降其次是最低0700 - 0800 LT和左右在所有的季节明显最大中午高和温和的太阳活动周期。此外,高度展览规模中等最大postsunset小时期间二分和夏季,而postsunset高峰在冬季缺席个月。调查使用上部离子性质通过ROCSAT-1以及Sami2是另一回事电离层(SAMI2)模型的模型模拟。有效的昼夜变化高度(HT)并不密切关注等离子体温度变化,在中低纬度地区在很大程度上是由垂直E x B控制吗漂移。

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