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Modeling Techniques Used to Analyze Safety of Payloads for Generic Missile Type Weapons Systems During an Indirect Lightning Strike

机译:用于分析间接雷击期间通用导弹型武器系统有效载荷的建模技术

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During lightning strikes buildings and other structures can act as imperfect Faraday Cages, enabling electromagnetic fields to be developed inside the facilities. Some equipment stored inside these facilities may unfortunately act as antenna systems. It is important to have techniques developed to analyze how much voltage, current, or energy dissipation may be developed over valuable components. In this discussion we will demonstrate the modeling techniques used to accurately analyze a generic missile type weapons system as it goes through different stages of assembly. As work is performed on weapons systems detonator cables can become exposed. These cables will form different monopole and loop type antenna systems that must be analyzed to determine the voltages developed over the detonator regions. Due to the low frequencies of lightning pulses, a lumped element circuit model can be developed to help analyze the different antenna configurations. We will show an example of how numerical modeling can be used to develop the lumped element circuit models used to calculate voltage, current, or energy dissipated over the detonator region of a generic missile type weapons system.
机译:在雷击时,建筑物和其他结构可以充当不完美的法拉第笼,使电磁场能够在设施内开发。这些设施内的一些设备可能不幸的是作为天线系统。重要的是具有开发的技术来分析可以在有价值的部件上显影的电压,电流或能量耗散量。在本讨论中,我们将展示用于准确分析通用导弹型武器系统的建模技术,因为它通过不同的装配阶段。随着工作的工作,在武器系统上进行雷管电缆可能会暴露。这些电缆将形成必须分析的不同单极和环形天线系统,以确定在雷管区域上显影的电压。由于避雷脉冲的频率低,可以开发出集总元件电路模型来帮助分析不同的天线配置。我们将展示数值建模如何用于开发用于计算用于计算通用导弹型武器系统的雷管区域的电压,电流或能量的集总元件电路模型的示例。

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