Detailed calculation of interception efficiencies for air-termination systems using the dynamic electro-geometrical model — Practical applications

Alexander Kern, R. Brocke, Veiko Raab, Martin Hannig, Michael Rock, O. Beierl, Wolfgang Zischank
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引用次数: 1

Abstract

Interception efficiency (IE) is the most important parameter to show the effectiveness of air-termination systems. The dynamic electro-geometrical model (DEGM), a numerical method, is capable of calculating such interception efficiencies. This model is purely based on international accepted models, parameters, deviations and dependencies, which are also comprised in the IEC 62305. So far it has been used to calculate the interception efficiencies for rod-type air-terminations. This paper discusses applications using the DEGM. A detailed analysis shows that for a rod-based air-termination system the IE is much better than expected. This leads to the idea of a comparison analysis between an air-termination system purely planned according to the standardized “rolling-sphere” method and an “optimized” air-termination system based on the DEGM.
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使用动态电几何模型的空气终端系统拦截效率的详细计算。实际应用
拦截效率(IE)是衡量空端系统有效性的最重要参数。动态电几何模型(DEGM)是一种能够计算这种拦截效率的数值方法。该模型完全基于国际公认的模型、参数、偏差和依赖关系,这些也包含在IEC 62305中。到目前为止,它已被用于计算杆状空中终端的拦截效率。本文讨论了DEGM的应用。详细分析表明,对于基于杆的空气终端系统,IE比预期的要好得多。这就产生了对纯粹按照标准化“滚动球”方法规划的空端系统和基于DEGM的“优化”空端系统进行比较分析的想法。
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