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Choice of insulation and surge protection of overhead transmission lines of 33 kV and above

机译:33 kV及以上架空输电线路的绝缘和电涌保护选择

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摘要

The paper is essentially a short critical r????????sum???????? of the factors which, in general, determine the security of high-voltage a.c. overhead-line transmission systems with, in addition, a description of methods which provide a logical basis for the efficient selection of insulation levels. Transient over-voltages are the main source of danger to overhead-line insulation; they may be of internal origin, but lightning strokes are the major hazard, particularly in oversea countries where lightning is prevalent. Lightning phenomena are therefore considered; statistical data on lightning currents, stroke frequency and other variables are included. The problem of shielding by earth wires and the importance in this connection of tower footing resistance are discussed. A description of the characteristics of line insulation is given; this includes data on power-frequency and impulse tests, flashover voltages, atmospheric influences, deterioration, use of wood poles, and other related matters. The selection of insulation levels involves careful consideration of the foregoing factors with, in addition, a means of estimating line reliability or probable outage frequency. Two methods which have been developed for predicting line performance under lightning conditions are described and compared, and their application is illustrated by numerical examples.
机译:本文本质上是一个简短的临界r ???????? sum ?????????通常决定高压交流电安全性的因素架空线传输系统,此外,还描述了为有效选择绝缘等级提供逻辑基础的方法。瞬态过电压是架空线绝缘的主要危险来源;它们可能是内部来源,但雷击是主要危害,特别是在闪电盛行的海外国家。因此考虑了闪电现象;包括有关雷电流,冲程频率和其他变量的统计数据。讨论了用地线进行屏蔽的问题以及在连接塔架基础电阻方面的重要性。给出了线路绝缘特性的描述。其中包括有关工频和脉冲测试,闪络电压,大气影响,劣化,木杆使用以及其他相关事项的数据。绝缘等级的选择还涉及对上述因素的仔细考虑,此外,还应采用一种估算线路可靠性或可能的停机频率的方法。描述和比较了已开发出的两种用于预测雷电条件下线路性能的方法,并通过数值示例说明了它们的应用。

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