连续输电线路塔高的最优确定

C. K. Wachjoe, Hermagasantos Zein, F. Yulistiani, S. Saodah, Yanti Suprianti
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引用次数: 0

摘要

架空导体两塔之间的输电线路的重量和跨距会引起低垂。在同一高度,两座塔对称地矗立着。尽管如此,在许多情况下,这两座塔在海拔上有差异,影响了凹陷向较低的塔的高度弯曲。本文利用抛物线模型得到了导线随两塔跨距变化的曲线。同时,该方法符合架空导线下所有物体(建筑物、树木或其他基础设施)的间隙距离标准。这个模型的结果是产生两个塔的跨度距离和高度。综上所述,本文将该模型应用于印度尼西亚南加里曼丹94个安装塔的案例研究。准确计算了塔身高度,优化了塔身垂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Determination of Tower Height on a Continuous Transmission Line
The weight and span distance of the transmission line between the two towers of an overhead conductor induces sag. For the same level of elevation, the two towers stand symmetrically. Nonetheless, in many cases, these two towers have differences in the elevation afflicting the sag to curve to the lower tower height. This paper utilizes a parabolic model to obtain a conductor curve along with the span distance between the two towers. Besides, this method complies with the clearance distance standards of all objects (buildings, trees, or other infrastructures) under the overhead conductor. The outcome of this model is to generate the span distance and heights of the two towers. Summing up, this paper applied the model to a case study of 94 installed towers in South Kalimantan, Indonesia. It has accurately calculated the tower heights to optimize sag.
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