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A novel method to simulate the high-altitude nuclear electromagnetic pulse under the asymmetrical situation

机译:一种在不对称情况下模拟高空核电脉冲的新方法

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摘要

The zero-order integral equation method (IEM) and the second-order IEM were introduced to simulate the high-altitude electromagnetic pulse (HEMP) in our former reports, where the planar gamma radiation model and the point gamma radiation model were utilized, respectively. Herein, the equation of the IEM is analyzed and simplified, after which the fifth-order method is introduced. Several asymmetric gamma radiation patterns are employed to simulate the asymmetric environments. The results show that the fifth-order method can well describe the tendency of the variation of the electric current source in the deposition region and that the HEMP radiating onto the ground not only depends on the electric current source along the line of sight (LOS) but also depends on the distribution of the electric current source around the LOS.
机译:引入零级积分方程方法(IEM)和二阶IEM以模拟我们以前的报告中的高空电磁脉冲(HEMP),分别使用平面伽马辐射模型和点伽马辐射模型。这里,分析和简化IEM的等式,之后引入了第五阶方法。采用几种非对称伽马辐射图案来模拟不对称环境。结果表明,第五阶方法可以很好地描述沉积区域中电流源在沉积区域中的变化的趋势,并且大麻辐射到地面上不仅取决于沿着视线(LOS)的电流源而且还取决于LOS周围电流源的分布。

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