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FDTD SIMULATION OF LIGHTNING CURRENT IN A MULTI-LAYERED CFRP MATERIAL

机译:多层CFRP材料中雷电电流的FDTD模拟

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Transient distribution of lightning current, which flows in a layered carbon fibre reinforced plastic (CFRP) material of aircraft, is analysed using the three dimensional (3D) finite difference time domain (FDTD) method with triangular-prism cells. One of the principal reasons for thermal sparks, which would occur on or in a CFRP aircraft body struck by lightning, is the concentration of lightning current near fasteners that connect body components or members. Therefore, it is important to analyse the transient distribution of lightning current in a layered CFRP material with fasteners for designing its lightning protection. Although rectangular or cubic cells are usually used in FDTD simulations, triangular-prism cells are employed in the present study for appropriately representing CFRP layers, each of which has anisotropic conductivity. An experiment for evaluating transient current distribution in a layered CFRP material is also carried out. The FDTD-computed current distribution agrees reasonably well with the corresponding measured one. This shows that the present FDTD simulation with triangular-prism cells is valid and effective in the analysis of lightning current in a layered CFRP structure, each layer of which 45-, 90-, -45- or 0-degree anisotropic conductivity.
机译:利用三维(3D)有限差分时域(FDTD)方法分析了三角棱镜电池的三维(3D)有限差分时域(FDTD)方法分析了在飞机的层状碳纤维增强塑料(CFRP)材料中流动的闪电电流的瞬态分布。热火花的主要原因之一,它发生在通过闪电的CFRP飞机体中或在CFRP飞机体中的浓度是连接主体部件或构件的紧固件附近的雷电流的浓度。因此,重要的是分析层状CFRP材料中的雷电电流的瞬态分布,其紧固件用于设计其防雷。尽管通常在FDTD模拟中使用矩形或立方体细胞,但是在本研究中使用三角棱镜电池,以适当地代表CFRP层,其每个研究具有各向异性导电性。还进行了一种用于评估分层CFRP材料中的瞬态电流分布的实验。 CDTD计算的电流分布与相应的测量值相当好。这表明具有三角形棱镜电池的本FDTD模拟在分层CFRP结构中的雷电流的分析中有效且有效,每层45-,90-,-45-或0度各向各向异性导电性。

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