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首页> 外文期刊>Annales Geophysicae >Climatology and modeling of ionospheric scintillations and irregularity zonal drifts at the equatorial anomaly crest region
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Climatology and modeling of ionospheric scintillations and irregularity zonal drifts at the equatorial anomaly crest region

机译:赤道异常波峰区电离层闪烁和不规则带状漂移的气候学和模拟

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In this study the climatology of ionospheric scintillations and the zonal drift velocities of scintillation-producing irregularities are depicted for a station located under the southern crest of the equatorial ionization anomaly. Then, the alpha - mu ionospheric fading model is used for the first- and second-order statistical characterization of amplitude scintillations. In the statistical analyzes, data are used from single-frequency GPS receivers acquired during similar to 17 years (September 1997-November 2014) at Cachoeira Paulista (22.4 degrees S; 45.0 degrees W), Brazil. The results reveal that the nocturnal occurrence of scintillations follows the seasonal distribution of plasma bubble irregularities observed in the longitudinal sector of eastern South America. In addition to the solar cycle dependence, the results suggest that the occurrence climatology of scintillations is also modulated by the secular variation in the dip latitude of Cachoeira Paulista, since the maximum occurrence of scintillations during the peak of solar cycle 24 was similar to 20% lower than that observed during the maximum of solar cycle 23. The dynamics of the irregularities throughout a solar cycle, as investigated from the estimates of the mean zonal drift velocities, presented a good correlation with the EUV and F10.7 cm solar fluxes. Mean-while, the seasonal behavior showed that the magnitude of the zonal drift velocities is larger during the December solstice months than during the equinoxes. In terms of modeling, the results for the alpha - mu distribution fit quite well with the experimental data and with the temporal characteristics of fading events independently of the solar activity level.
机译:在这项研究中,描述了位于赤道电离异常南峰下方的一个台站的电离层闪烁气候学和产生闪烁不规则的纬向漂移速度。然后,将α-μ电离层衰落模型用于幅度闪烁的一阶和二阶统计表征。在统计分析中,使用的数据来自巴西Cachoeira Paulista(南纬22.4度;北纬45.0度)在大约17年(1997年9月至2014年11月)内获得的单频GPS接收器。结果表明,闪烁的夜间发生是在南美东部纵向部分观察到的血浆气泡不规则性的季节性分布所致。除了对太阳周期的依赖性外,结果还表明,闪烁的发生气候也受到Cachoeira Paulista倾角纬度的长期变化的调节,因为在太阳周期24的峰值期间最大的闪烁发生类似于20%低于太阳周期最大时的观测值。23.根据平均纬向漂移速度的估计值调查,整个太阳周期的不规则动力学与EUV和F10.7 cm太阳通量具有良好的相关性。同时,季节性行为表明,在至多至春分期间,纬向漂移速度的幅度更大。在建模方面,α-mu分布的结果与实验数据以及与太阳活动水平无关的衰落事件的时间特征非常吻合。

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