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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the Relationship Between the Rate of Change of Total Electron Content Index (ROTI), Irregularity Strength (C_kL), and the Scintillation Index (S_4)
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On the Relationship Between the Rate of Change of Total Electron Content Index (ROTI), Irregularity Strength (C_kL), and the Scintillation Index (S_4)

机译:在的变化率之间的关系总电子含量指数(烤肉),不规则强度(C_kL),闪烁指数(S_4)

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We present a new quantitative theory for the rate of change of total electron content index (ROTI) by noting its straightforward relationship to the phase structure function of ionospheric turbulence. The theory provides the dependence of ROTI on the sampling interval, satellite motion, propagation geometry, and the spectral shape, strength, anisotropy, and drift of the irregularities. We also present useful approximations to the full theory that elucidate the principal dependencies. We show, for example, that ROTI varies with the effective scan velocity (V_(eff)) to the power ν - 1/2, where 2ν + 1 is the spectral index of the 3-D irregularities. This dependence on V_(eff) persists in the ratio of ROTI to the intensity scintillation index (S_4), which thus depends on the particular viewing geometry for each satellite. While irregularity strength cancels when forming this ratio, the dependence on Fresnel scale remains. We validate the theory by comparing predictions of irregularity strength (C_kL) and S_4 from 1-Hz ROTI measurements with calculations derived from 20-Hz intensity samples collected at Ascension Island. The theory explains the observations well, except when the scan is directed nearly along the field-aligned irregularities (within 20° of meridional). For cross-field scans the standard deviations of the error in predicting S_4 from 1-Hz ROTI were 0.05, 0.11, and 0.14 for weak, moderate, and strong scintillation, respectively. These encouraging results suggest the possibility of using dense networks of inexpensive total electron content monitors to provide quantitative diagnostics of ionospheric scintillation and the irregularities that cause them.
机译:提出了一种新的定量的理论变化的总电子含量指数(烤肉)通过指出其简单的关系电离层相位结构函数动荡。烤肉的采样间隔,卫星运动,传播几何,光谱形状,强度、各向异性和漂移的违规行为。近似的完整理论,阐明主要依赖。烤肉随有效扫描速度(V_ (eff))ν- 1/2次方,2ν+ 1在哪里的光谱指数3 d违规行为。这种依赖V_ (eff)持续的比率烤肉的强度闪烁指数(S_4),因此取决于特定的查看每个卫星几何。不规则的力量取消时形成比,对菲涅耳的依赖规模仍然存在。我们验证理论,通过比较预测不规则的力量(C_kL)和从1-Hz S_4来自烤肉的测量与计算在提升20赫兹强度样本收集岛。嗯,除了当扫描近沿着field-aligned违规行为(内20°的经向)。预测误差的标准差从1-Hz S_4烤肉是0.05,0.11和0.14弱、温和和强烈的闪烁,分别。使用的密集网络的可能性便宜的总电子含量监测提供电离层的定量诊断闪烁的违规行为的原因他们。

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