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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On monthly/seasonal/longitudinal variations of equatorial irregularity occurrences and their relationship with the postsunset vertical drift velocities
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On monthly/seasonal/longitudinal variations of equatorial irregularity occurrences and their relationship with the postsunset vertical drift velocities

机译:关于赤道不规则发生的月度/季节/纵向变化及其与后期垂直漂移速度的关系

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Monthly variation of global equatorial density irregularity distribution has been obtained with the data taken by ROCSAT-1 at the 600 km topside ionosphere from March 1999 to June 2004 during high to moderate solar activity years. This global distribution of monthly irregularity occurrence rate not only provides the best spatial/temporal distribution in existence so far but also serves to fill the gap of irregularity distribution missing over some eastern Pacific region where no ground observation is available. The 5 1/2-year result of the monthly occurrence pattern indicates a smooth variation across the longitudes contrary to some beliefs that a drastic change in irregularity occurrence pattern has occurred across the eastern Pacific longitudes. Excellent agreement is noted for the current results with Aarons' (1993) conjectured sketch of the global scintillation distribution. Furthermore, the seasonal/longitudinal (s/l) variations of quiet time postsunset vertical drift velocities are found to track closely with the s/l variations of irregularity occurrences. Linear regression analysis between the vertical drift velocity and the irregularity occurrence rate indicates that the vertical drift velocities at three different longitude zones of magnetic declination have good correlations with the irregularity occurrences for all seasons. This implies that the averaged postsunset vertical drift velocity is a good indicator for the occurrences of equatorial density irregularities in a longitude region of similar magnetic declination. The smooth variation of monthly/seasonal/longitudinal distributions of the vertical drift velocities that results in the smooth variation of topside density irregularity occurrences implies that the global occurrence pattern of either distribution is controlled by the smooth global variation of the postsunset ionospheric condition, related to the magnetic declination effect and the seasonal variation of the ionospheric density level at the dip equator located with respect to the geographic equator. There seems little need to include the global distribution of instability perturbation seeds from atmospheric disturbances to complete the global distribution of topside irregularity occurrences.
机译:利用ROCSAT-1于1999年3月至2004年6月在高至中度太阳活动年期间在600 km顶空电离层所获得的数据,获得了全球赤道密度不规则分布的月变化。这种每月不规则发生率的全球分布不仅提供了迄今为止存在的最佳时空分布,而且还填补了一些东太平洋地区没有地面观测资料时所缺少的不规则分布的空白。每月发生模式的5 1/2年结果表明,经度上的平稳变化与某些认为东太平洋经度上出现的不规则发生模式的急剧变化相反的看法相反。 Aarons(1993)推测的全球闪烁分布草图与当前结果非常吻合。此外,发现静止时间后的垂直漂移速度的季节性/纵向(s / l)变化与不规则现象的s / l变化密切相关。垂直漂移速度与不规则发生率之间的线性回归分析表明,磁偏角的三个不同经度区域的垂直漂移速度与所有季节的不规则发生都有很好的相关性。这意味着平均后置垂直位移速度是类似磁偏角的经度区域赤道密度不规则现象的良好指示。垂直漂移速度的月度/季节/纵向分布的平滑变化导致顶面密度不规则现象的平滑变化,这意味着这两种分布的整体发生模式均受未电离层电离层状况的平滑全局变化控制,与相对于地理赤道的倾角赤道的磁偏角效应和电离层密度水平的季节性变化。似乎几乎不需要包括来自大气扰动的不稳定性扰动种子的全球分布,以完成顶部不规则现象的全球分布。

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