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A Comparative Study of the Ray Theory Model With the Finite Difference Time Domain Model for Lightning Sferic Transmission in Earth-Ionosphere Waveguide

机译:基于地球电离层波导中闪电速度传播有限差分时域模型的光线理论模型的比较研究

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The lightning sferic has been shown to be a valuable radio signal for detecting perturbations of the lower ionosphere caused by the lightning activity itself and by other terrestrial and space events (Shao et al., 2012, https://doi.org/10.1038/ngeo1668). Adding to many existing methods, we have recently proposed an improved ray theory (RT) model for investigating the lightning sferic transmission in the Earth-ionosphere waveguide (Qin et al., 2017, https://doi.org/10.1002/2016JD025599). In the present study, a further modification to the RT model was made to increase its accuracy in modeling the lightning sferic in a broader frequency band and a larger distance range. The modification included two aspects: a new incident angle finding technique and a novel method for deriving the high-order hop series. To quantitatively evaluate the effectiveness of the modification, a comparative study of this modified RT model with its previous version and the full-wave finite difference time domain model was carried out. The results showed that this modified RT model did better than its previous version and was in close agreement with the full-wave finite difference time domain method in modeling the lightning sferic in frequencies bands lower to 3, 5, and 7 kHz for distances up to 500, 800, and 1,000 km, respectively.
机译:被证明的闪电是一种有价值的无线电信号,用于检测由闪电活动本身和其他地面和空间事件引起的较低电离层的扰动(Shao等,2012,https://doi.org/10.1038/ ngeo1668)。添加到许多现有方法,我们最近提出了一种改进的射线理论(RT)模型,用于调查地球电离层波导中的闪电速度(Qin等人,2017,Https://Doi.org/10.1002/2016JD025599) 。在本研究中,对RT模型进行了进一步的修改,以提高其在更广泛的频带和较大距离范围内建模闪电旋转的精度。修改包括两个方面:一种新的入射角发现技术和用于导出大奖跳系列的新方法。为了定量评估修改的有效性,对该修正的RT模型与其先前版本的比较研究进行了对比较研究和全波有限差分时间域模型。结果表明,该修改的RT模型比以前的版本更好,并与全波有限差分时间域方法密切一致,在距离下到3,5和7 kHz的频率频带中的闪电旋转速度模拟500,800和1,000公里。

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