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首页> 外文期刊>Journal of Electrostatics >'The mesh method' in lightning protection standards - Revisited
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'The mesh method' in lightning protection standards - Revisited

机译:防雷标准中的“网孔法”-重新审视

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摘要

At present the design of the Lightning protection systems (LPS) for structures as stipulated in standards is based on the electro - geometrical method, which was initially used to protect power lines from lightning. A derivative of the electro-geometrical method is the rolling sphere method. This method together, with the protection angle method and mesh method are used almost in all lightning standards as the measure in installing the lightning protection systems of grounded structures. In the mesh method, the dimension of the cell size in different levels of protection is determined using the rolling sphere method. Since the rolling sphere method does not take into account the physics of the lightning attachment process there is a need to evaluate the validity of the stipulated value in standards of the minimum lightning current that can penetrate through the mesh in different levels of protection. In this paper, meshes of different sizes as stipulated in the lightning protection standards were tested for their ability to intercept lightning flashes using a lightning attachment model that takes into account the physics of connecting leaders on. The results are in reasonable agreement with the specifications given in the lightning protection standards.
机译:目前,标准中规定的结构防雷系统(LPS)的设计基于电几何方法,该方法最初用于保护电力线免受雷击。电几何方法的派生是滚动球法。几乎所有的雷电标准都将这种方法与保护角方法和网格方法一起用作安装接地结构的雷电保护系统的措施。在网格方法中,使用滚动球法确定不同保护级别的像元大小的尺寸。由于滚动球法没有考虑雷电附着过程的物理性质,因此需要以最小雷电流的标准评估规定值的有效性,该最小雷电流可以在不同防护等级下穿透网孔。在本文中,使用了考虑到连接引线物理特性的防雷附件模型,测试了防雷标准中规定的不同尺寸的网格对雷电的拦截能力。结果与防雷标准中给出的规格合理吻合。

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