直接雷击对人体的建模与分析

S. Arshad, M. Isnin, N. H. Halim, A. Z. Abdullah, C. Wooi, N. Hussin
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引用次数: 4

摘要

雷电事故的发生是由于大电流和短时间内发生的。雷电可通过直击、侧闪、接触电压和阶跃电压等机制对人造成伤害。利用备选瞬态程序(ATP)软件对人体直接雷击进行模拟建模和分析。根据人体正常体重、超重体重和单金属腿人体的不同情况,建立了三种人体模型。每个模型中人体电阻值根据人体部位不同而不同。该项目表明,通过在人体不同部位注入雷击电流可以模拟不同的人体模型,这在实际实验中是无法实现的。结果表明,与正常体重者和超重者相比,金属腿人具有更高的电位差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Analysis of Direct Lightning Strike to the Human Body
Lightning incidents happened due to very high current and in short duration of time. Lightning can cause injuries to human through mechanisms such as direct strike, side flash, touch voltage and step voltage. Alternative Transient Program (ATP) software was implemented to simulate the modelling and analysis of direct lightning strike to the human body. Three human body model were created according to different conditions of the human body such as normal weight of human body, overweight human body and human with one metal leg in it. The resistance values of human body in each model were different according to different parts of human body. The project shows the different human body model can be simulated by injecting lightning strike current at different parts of human body which cannot be implemented in real experiment. Results show that human with metal leg has higher potential difference compared to human with normal weight and human with overweight.
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