
doi: 10.2172/1031311
Linear lightning diffusion into a Faraday cage is studied. An early-time integral valid for large ratios of enclosure size to enclosure thickness and small relative permeability ({mu}/{mu}{sub 0} {le} 10) is used for this study. Existing solutions for nearby lightning impulse responses of electrically thick-wall enclosures are refined and extended to calculate the nearby lightning magnetic field (H) and time-derivative magnetic field (HDOT) inside enclosures of varying thickness caused by a decaying exponential excitation. For a direct strike scenario, the early-time integral for a worst-case line source outside the enclosure caused by an impulse is simplified and numerically integrated to give the interior H and HDOT at the location closest to the source as well as a function of distance from the source. H and HDOT enclosure response functions for decaying exponentials are considered for an enclosure wall of any thickness. Simple formulas are derived to provide a description of enclosure interior H and HDOT as well. Direct strike voltage and current bounds for a single-turn optimally-coupled loop for all three waveforms are also given.
Diffusion, General Physics, Magnetic Fields, Faraday Cups, Response Functions, Wave Forms, 71 Classical And Quantum Mechanics, Thickness, Excitation, Lightning, Permeability
Diffusion, General Physics, Magnetic Fields, Faraday Cups, Response Functions, Wave Forms, 71 Classical And Quantum Mechanics, Thickness, Excitation, Lightning, Permeability
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