低空核电磁脉冲与目标作用时入射源引入方法

A method for introducing the incident source in low-altitude NEMP-target interaction analysis

  • 摘要: 本文提出了一种基于等效原理的源引入方法,解决了低空核爆电磁脉冲(NEMP)因缺乏统一标准波形与典型目标作用时无法直接加源的问题。该方法通过在目标外部构建闭合等效面,将外部入射波的作用转化为该面上等效电、磁流源的激励,并结合时域有限差分方法验证了该等效方法的正确性。在此基础上,以典型舰船平台为研究对象,针对万吨、十万吨及百万吨爆炸当量的低空核爆场景,计算了舰船鞭状天线的感应电流时域响应。所提方法不限于低空核电磁脉冲场景,也可应用于其他非标准波形脉冲与目标的耦合效应分析。

     

    Abstract:
    Background The low-altitude nuclear electromagnetic pulse (NEMP) is significantly influenced by the ground environment, which results in the absence of a standard waveform and precludes the direct application of a source when analyzing its interaction with typical targets.
    Purpose This paper proposes an equivalent principle-based method to introduce the source for analyzing low-altitude NEMP interaction with targets, a challenge arising from the significant ground influence on the waveform and the absence of a unified description.
    Methods By constructing a closed equivalent surface enclosing the target, the influence of the external incident wave is converted into the excitation of equivalent electric and magnetic current sources on that surface. The validity of this equivalent method is verified using the finite-difference time-domain method.
    Results Taking a typical ship platform as the research object, the induced current time-domain responses of a shipboard whip antenna are calculated for low-altitude nuclear explosion scenarios with yields of 10 kT、100 kT and 1 MT. The results indicate a nonlinear relationship between the induced current in the antenna load and the explosion yield.
    Conclusions The proposed approach demonstrates significant generality, extending effectively to the analysis of electromagnetic coupling between arbitrary incident pulses and complex targets, particularly in scenarios where a standard or unified waveform description is unavailable.

     

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