采用天然元件的非隔离防雷系统,直接雷击产生的接触电压和人体电流对人体的威胁

A. Kern, Anahita Imani Vashiani, Tobias Timmermanns
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引用次数: 2

摘要

对于非隔离防雷系统(LPS)的典型情况,研究了可能流经人体直接接触LPS结构部分的脉冲电流。在常规下导线的基本LPS模型的基础上,对内外钢柱和金属隔板的情况进行了考虑和比较。对整个LPS等效电路进行了时域线量、电压和电流的数值模拟。因此,可以这样说,通过增加传统的下导线和外部钢柱的数量,对人类的威胁确实可以减少,但不能降低到可接受的限度。如果内部钢柱用作天然下导体,则可以充分减少威胁,这取决于钢柱与雷电等电位连接或接地端接系统的低阻连接,例如。如果使用金属栅栏,则对人类接触的威胁通常很低,如果栅栏充分互连并多次连接到雷电等电位连接或接地终端系统,例如。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Threat for human beings due to touch voltages and body currents caused by direct lightning strikes in case of non-isolated lightning protection systems using natural components
For typical cases of non-isolated lightning protection systems (LPS) the impulse currents are investigated which may flow through a human body directly touching a structural part of the LPS. Based on a basic LPS model with conventional down-conductors especially the cases of external and internal steel columns and metal façades are considered and compared. Numerical simulations of the line quantities voltages and currents in the time domain are performed with an equivalent circuit of the entire LPS. As a result it can be stated that by increasing the number of conventional down-conductors and external steel columns the threat for a human being can indeed be reduced, but not down to an acceptable limit. In case of internal steel columns used as natural down-conductors the threat can be reduced sufficiently, depending on the low-resistive connection of the steel columns to the lightning equipotential bonding or the earth termination system, resp. If a metal façade is used the threat for human beings touching is usually very low, if the façade is sufficiently interconnected and multiply connected to the lightning equipotential bonding or the earth termination system, resp.
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