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Use of dielectric properties of human tissues in the analysis of lightning injuries

机译:人体组织的介电特性在雷电伤害分析中的应用

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This paper focuses on the use of dielectric properties of human tissues in analysing injuries as a result of the lighting short stroke current. The lightning short stroke current is decomposed into its frequency components and the effects of these frequency components on human tissues are analysed. The dielectric properties of nineteen types of human body tissues are examined and the correlations between the impedances of these tissues and the lightning stroke current pathway are investigated. The human tissues are modelled as cylindrical structures using a FEA (Finite Element Analysis) approach and simulated using the COMSOL Multiphysics software suite. The results obtained from the simulations include: current density, complex impedance and total absorbed power of the tissues. Only the first short stroke of the lightning flash is considered as the test parameter. The direct strike mechanism of lightning injury is examined in this paper with the possibility of including other mechanisms of lightning injury in the future. The first short stroke of the lightning flash is modelled using a double exponential model and exhibit a 4 kA 1.8/30μs waveform. This waveform consists of frequencies up to 100 kHz. The skin and bone marrow is found to have the most varying impedances within this frequency range and the heart is found to be the organ with the least impedance. The results from the simulations depict physical properties of real human tissues and hence are valid in the analyses of lightning injuries.
机译:本文着重于利用人体组织的介电特性来分析由于照明短冲程电流而造成的伤害。雷击短时电流被分解成其频率分量,并分析了这些频率分量对人体组织的影响。检查了十九种人体组织的介电性能,研究了这些组织的阻抗与雷击电流路径之间的相关性。使用FEA(有限元分析)方法将人体组织建模为圆柱结构,并使用COMSOL Multiphysics软件套件进行仿真。从模拟获得的结果包括:电流密度,复阻抗和组织的总吸收功率。仅将闪电的第一个短冲程视为测试参数。本文研究了雷击的直接打击机制,并有可能在将来包括其他雷击机制。闪电的第一个短冲程使用双指数模型建模,并显示4 kA的1.8 /30μs波形。该波形包含高达100 kHz的频率。发现在该频率范围内,皮肤和骨髓的阻抗变化最大,而心脏是阻抗最小的器官。模拟的结果描述了真实人体组织的物理特性,因此在雷电伤害分析中是有效的。

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