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Experimental Investigation Into the Mechanism of 220-kV Vertical-Arrayed Double-Bundle Transmission-Line Conglutination

机译:220kV垂直排列双束输电线路粘连机理的实验研究

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摘要

The mechanism of vertical-arrayed double-bundle transmission-line conglutination is studied in this paper through experiments on a laboratory-based physical model with a 230-m span. Based on the equivalence principle, the conglutination problem in real-world transmission lines has been reproduced in high-voltage and heavy-current experiments where the test circuit is compensated by a series capacitor, so that the output current is continuously adjustable by the voltage regulator and power current transformer. This paper presents, in detail, the experiments carried out, and demonstrated the threshold factors associated with the conglutination phenomenon. The investigation revealed that the number one factor contributing to transmission-line conglutination is the electromagnetic force, which, in turn, is affected by the space between the lines; initial sag and ambient temperature also play important roles. The research results with a thorough understanding of the mechanism of transmission-line conglutination can help provide an understanding of the mechanisms and will enable conduction of numerical analysis of the phenomenon.
机译:通过在230 m跨度的实验室物理模型上进行实验,研究了垂直排列的双束传输线的粘连机制。基于等效原理,在高压和大电流实验中重现了真实传输线中的粘连问题,在该实验中,测试电路由串联电容器补偿,因此输出电流可通过稳压器连续调节和电流互感器。本文详细介绍了所进行的实验,并证明了与粘连现象相关的阈值因素。调查显示,导致传输线粘连的第一个因素是电磁力,而电磁力又受线间距离的影响。初始下垂和环境温度也起重要作用。对传输线粘连机理有透彻了解的研究结果有助于提供对机理的理解,并可以对现象进行数值分析。

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