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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Radar Studies of Height-Dependent Equatorial F region Vertical and Zonal Plasma Drifts
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Radar Studies of Height-Dependent Equatorial F region Vertical and Zonal Plasma Drifts

机译:雷达的研究Height-Dependent赤道F地区垂直和纬向等离子体漂移

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We present the results of an analysis of long-term measurements of ionospheric F region E × B plasma drifts in the American/Peruvian sector. The analysis used observations made between 1986 and 2017 by the incoherent scatter radar of the Jicamarca Radio Observatory. Unlike previous studies, we analyzed both vertical and zonal components of the plasma drifts to derive the geomagnetically quiet time climatological variation of the drifts as a function of height and local time.We determine the average behavior of the height profiles of the drifts for different seasons and distinct solar flux conditions. Our results show good agreement with previous height-averaged climatological results of vertical and zonal plasma drifts, despite that they are obtained from different sets of measurements. More importantly, our results quantify average height variations in the drifts. The results show, for example, the solar flux control over the height variation of the vertical drifts. The results also show the weak dependence of the daytime zonal drift profiles on solar and seasonal variations. We quantify the effects of seasonal and solar flux variations on the morphology of the vertical shear in the zonal plasma drifts associated with the evening plasma vortex. Assuming interchangeability between local time and longitude, we tested the curl-free condition for the F region electric fields with very good results for all seasons and solar flux conditions.We envision the use of our results to aid numerical modeling of ionospheric electrodynamics and structuring and to assist with the interpretation of satellite observations of low-latitude plasma drifts.
机译:我们提出的长期分析的结果测量电离层F区E×B等离子体飘在美国/秘鲁部门。分析使用1986和之间的观察2017的非相干散射雷达Jicamarca无线电天文台。研究中,我们分析了两个垂直和纬向等离子体漂移推导出的组件眼睛安静的时间气候变化的高度的函数和当地时间。漂浮的高度的概要文件不同的季节和不同的太阳能通量条件。以前height-averaged气候结果垂直和纬向等离子体漂移,尽管如此他们是来自不同的测量。量化平均高度变化的雪堆。结果显示,例如,太阳能通量控制变化的垂直高度飘。白天的纬向漂移在太阳能和概要文件季节性变化。季节性和太阳能通量的变化形态学的垂直剪切带状等离子体漂移与晚上等离子体有关漩涡。时间和经度,我们测试了curl-freeF区电场的条件所有季节和太阳能通量很好的结果条件。援助的电离层数值模拟电动力学和安排和协助与卫星观测的解释低纬度的等离子体漂移。

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