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Share of the Lightning Current on Electric Installation Lines Within a Building Considering Equipotential Bonding at Roof Level

机译:考虑屋顶等电位连接的建筑物内电气安装线上的雷电流份额

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The main objective of this paper is to evaluate the maximum share of the lightning current, which enters a building on electric installation lines. The conductors of the power circuit are equipotentially bonded to the air-termination or down-conductor system at roof level. For live conductors, the lightning equipotential bonding is realized by the use of surge protective devices (SPD), which have to withstand the threat of the share of the lightning current. The most important parameter is the maximum transferred charge, which was calculated by the use of the computer code CONCEPT II. The maximum expected charge is about 0.6 & x00A0;C for buildings with metal fa & x00E7;ades. If the building is additionally equipped with a metal roof, or, if the roof, the ceilings and the pillars & x002F;walls consist of reinforced concrete, the maximum expected charge is 0.1 C. For buildings without shielding elements (metal roof, metal fa & x00E7;ade, reinforced concrete), the charge is much higher, in the range of several coulombs. The values only apply to spark-type SPD and to building up to heights of about 15 m using copper or aluminum for the air-termination and down-conductor system. The transferred charge is significantly higher, if the air-termination and down-conductor system consists of stainless steel.
机译:本文的主要目的是评估雷电电流的最大份额,雷电电流通过电气安装线路进入建筑物。电源电路的导体在屋顶水平等电位连接至空气终端或引下线系统。对于带电导体,雷电等电位连接是通过使用电涌保护设备(SPD)来实现的,该设备必须承受雷电流共享的威胁。最重要的参数是最大转移电荷,它是使用计算机代码CONCEPT II计算得出的。对于具有金属fa&x00E7; ades的建筑物,最大预期收费约为0.6&x00A0; C。如果建筑物还配备了金属屋顶,或者如果屋顶,天花板和柱子及墙壁由钢筋混凝土组成,则最大预期电荷为0.1C。对于没有屏蔽元件的建筑物(金属屋顶,金属幕墙&x00E7; ade,钢筋混凝土),电荷要高得多,在几个库仑范围内。该值仅适用于火花型SPD,以及使用铜或铝作为空气终端和引下线系统的高度约15 m的建筑物。如果空气终端和引下线系统由不锈钢制成,则传输的电荷会更高。

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