Abridgment of transmission research and design with the field as a laboratory

F. E. Andrews, C. L. Stroup
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Abstract

Overhead transmission lines are usually considered to be a class of equipment subject to certain types of troubles which cannot be avoided by means accepted in ordinary practise. It is the purpose of this paper (1) to describe improvements in design of wood pole lines of the 33,000-volt class, which improvements have been developed and applied to the system with which the authors have been identified and which it is believed will greatly reduce the characteristic troubles; (2) to present an explanation of flashovers on wood structures; (3) to give the facts found in field investigations which form the basis for the improvements adopted; (4) to describe the method used for field investigations and analysis of troubles. The studies and investigations referred to deal primarily with the matter of insulation. Considerable information, relative to the insulation values of wood in a structure, as developed by laboratory tests has been published. Experience is cited to show the value of wood insulation in the structure developed from field experience on 33,000-volt lines, and there is presented a practical economical design of wood pole structures using wood braces in place of the usual metal braces which seem practically immune to lightning troubles. Data from laboratory tests are given to substantiate conclusions developed in the field investigations. The performance of insulators with respect to mechanical and electrical breakage is shown, and the use of insulators of more sturdy design is discussed.
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缩短变速器的研究和设计与现场作为实验室
架空输电线路通常被认为是一类设备,有某些类型的故障,不能通过通常做法中接受的手段来避免。本文的目的是(1)描述33,000伏级木杆线设计的改进,这些改进已经开发并应用于作者所确定的系统,并且相信这些改进将大大减少特征故障;(二)对木结构上的闪燃现象进行说明;(三)说明实地调查发现的作为改进依据的事实;(4)描述了现场调查分析故障所采用的方法。所提到的研究和调查主要涉及绝缘问题。通过实验室试验得出的有关结构中木材绝缘值的大量资料已经出版。从33000伏特线路的现场经验中得出的经验表明,木材绝缘在结构中的价值,并提出了一种实用经济的木杆结构设计,使用木支架代替通常的金属支架,似乎几乎不受雷击的影响。提供实验室测试数据以证实实地调查得出的结论。给出了绝缘子在机械和电气破坏方面的性能,并讨论了设计更坚固的绝缘子的使用。
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