Abridgment of rationalization of station insulating structures with respect to insulation of the transmission line

C. Fortescue
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引用次数: 1

Abstract

The purpose of this paper is to present a logical basis for the insulation of transmission lines and substations using as a basis the characteristics of traveling waves produced by lightning discharges. The method presented was formulated from the data obtained from the cathode ray oscillograms of actual line surges and upon the laboratory work in which the impulse flashover characteristics of insulating structures was determined. The breakdown volt — time characteristics of various forms of insulation are presented. Using these curves of various forms of gaps in the known characteristics of traveling waves, insulation of the transmission line at various distances from the gap is determined so that flashover will be unlikely to occur at these points. A similar method of analysis is made upon substations and lines protected by lightning arresters, but with the known characteristics of lightning arresters, the insulation on the line up to points 1000 to 5000 ft. away can be apportioned so that the lightning arrester will take the discharge, preventing the flashover of insulation. The system set forth in the paper enables the transmission engineer to design the line and substation in an economical manner and obtain adequate protection for all points desired.
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在输电线路绝缘方面,精简变电站绝缘结构的合理化
本文的目的是利用雷电放电产生的行波特性为输电线路和变电站的绝缘提供一个逻辑基础。所提出的方法是根据实际线浪涌的阴极射线示波图所获得的数据和在实验室中确定绝缘结构的脉冲闪络特性的基础上制定的。介绍了各种形式绝缘的击穿电压-时间特性。利用已知行波特性中各种形式的间隙的这些曲线,可以确定距离间隙不同距离处传输线的绝缘,从而使这些点不太可能发生闪络。对受避雷器保护的变电站和线路进行了类似的分析方法,但由于避雷器的已知特性,可以分配到1000至5000英尺远的线路上的绝缘,使避雷器将采取放电,防止绝缘的闪络。本文提出的系统使输电工程师能够以经济的方式设计线路和变电站,并对所需的所有点获得充分的保护。
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