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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Application of the nonlinear antenna theory model to a tall tower struck by lightning for the evaluation of return stroke channel current and radiated electromagnetic fields
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Application of the nonlinear antenna theory model to a tall tower struck by lightning for the evaluation of return stroke channel current and radiated electromagnetic fields

机译:应用非线性天线理论模型一个高大的塔被闪电击中了评价回击通道电流辐射电磁场

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In this paper an improved antenna theory (AT) model with nonlinearly varying resistive loading and fixed inductive loading is used to electromagnetically simulate lightning strikes to tall structures. Measurement data captured from Toronto's CN tower are used to verify the validity of the new model. Both the return stroke channel (RSC) and the tower are modeled by straight thin conducting wires. The wire model of the channel is assumed to have distributed nonlinear resistive elements as a function of current and time, adopted from the numerical models of a spark channel and consequent shockwave from a lightning discharge, yielding a varying value of the channel radius from the base to the cloud along the RSC. Such distributed elements are used to take into account the current attenuation while propagating along the channel and varying propagation speeds lower than the speed of light. RSC current distribution and radiated electromagnetic fields in near, intermediate, and far range distances predicted by the proposed model are compared with those obtained from the measurement data and with those of the original AT model and the AT with fixed inductive loading (ATIL-F) model. Current wave propagation speed profile in RSC and tower is investigated as a function of height as well. The effects of applying different tower geometry models are also studied. It is shown that the new model is able to reproduce one of the characteristic features of the electromagnetic fields radiated by lightning, namely, the far-field inversion of polarity with a zero crossing occurring in the tens of microseconds range. We have also investigated the effect of nonlinearity of the channel assumed in the new model. It is shown that among the electromagnetic models, distributed nonlinear resistance along the channel leads to a zero crossing in the tens of microseconds range even for large values of resistance. It is also shown that decreasing the nonlinearity results in the predictions asymptotically converging to those of the ATIL-F model in which a uniformly distributed resistance along the channel is used. Further, the profile of the return stroke current attenuation and speed and removed charge as a function of height are investigated. Finally, the effect of lossy ground is analyzed using Wait-Cooray convolution formula in the time domain to verify the validity of PEC assumption in the proposed model.
机译:本文改进了天线理论()模型与非线性电阻加载不同和固定电感加载使用电磁模拟雷击高大的结构。多伦多的CN塔用于验证新模型的有效性。通道(RSC)和塔建模直细导电线。假设信道分配非线性电阻元素的函数电流和时间,采用数值火花通道的模型和结果冲击波从闪电放电,产生一个不同的价值通道半径的基础沿着RSC到云。元素用于考虑电流衰减而传播的通道和不同传播速度低于光速。辐射电磁场在附近,中间,远射程距离预测通过该模型相比从测量数据获得和那些最初的模型和固定电感加载(ATIL-F)模型。传播速度在RSC和塔调查作为高度的函数。应用不同的塔几何形状的影响模型也进行了研究。模型可以复制的电磁的特征领域辐射被闪电击中,即远场极性反转和一个零十字路口发生在几十微秒的范围内。新通道的非线性假设模型。模型、分布式非线性电阻通道导致数以千万计的零交叉甚至微秒范围大的值阻力。非线性预测结果渐近收敛于ATIL-F均匀分布的模型阻力沿着通道使用。回击电流衰减和速度和移除高度的函数正在调查中。分析了地面使用Wait-Cooray卷积在时域公式来验证有效性压电陶瓷的假设模型。

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