用时域有限差分法模拟简单结构和直升机机体上的闪电效应

G. Ballas, C. Balanis
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引用次数: 1

摘要

飞机在飞行中可能遇到的一个关键问题是闪电。闪电的影响大致可分为直接和间接两种。直接效应与闪电弧进入和离开飞机的点密切相关。不同影响的例子包括飞机外壳的熔化,非导电外部安装部件的穿刺和燃料系统的火花。间接影响与飞机内部耦合的磁场和电场有关。这些可能会对飞机的电子设备造成暂时的干扰,甚至是永久性的损坏。这种耦合发生的机制是机体结构上的电阻电压降和通过孔洞(如窗户)。即使没有小孔,在机身金属壁上流动的雷击电流也会在内部产生非零磁场。该场与阻性压降共同形成扩散机制。本文采用时域有限差分法对结构上的雷电电流进行了建模。然后描述了简单圆柱结构的扩散机理,并给出了仿真结果。最后给出了黑鹰直升机结构在雷电脉冲激励下的实验结果。
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Modeling of lightning effects on simple structures and helicopter airframes using FDTD
One critical problem that as aircraft may encounter during a flight is lightning. The effects of lightning can be roughly distinguished as direct and indirect. The direct effects are closely related to the points where the lightning arc enters and exits the aircraft. Examples of different effects include melting of the aircraft skin, puncture of nonconducting externally mounted parts and sparks in the fuel system. The indirect effects have to do with the magnetic and electric fields coupled to the interior of the aircraft. These can cause temporary upset or even permanent damage to the electronic equipment of the aircraft. The mechanisms through which this coupling can happen are resistive voltage drop on the airframe structure and through apertures, such as windows. Even with no apertures, the lightning current flowing in the metal wall of the airframe produces a non-zero magnetic field at the interior. This field together with the resistive voltage drop form the diffusion mechanism. In this paper the lightning current on a structure is modeled using FDTD. Then the diffusion mechanism is described for simple cylindrical structures and simulation results are shown. Finally, results on a Blackhawk helicopter structure excited with a lightning pulse are presented.
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