A Simplified Method of Flexible Conductors Mechanic Calculation in Switchgears without Restrictions on the Number of Taps

Q3 Energy
Y. V. Bladyko, E. Ponomarenko, P. Klimkovich
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引用次数: 0

Abstract

The purpose of the mechanical calculation of flexible conductors of switchgears and power lines is to determine the sag, tensions, and loads on support structures, minimum distances to adjacent live parts and some other parameters. Calculations should be made taking into account distributed and concentrated loads. Distributed loads directed vertically are determined by the weight of the wire, insulator strings, and possible ice deposits on them. Distributed loads in the horizontal plane should be calculated in climatic conditions with lateral wind pressure. Concentrated loads are created by such elements as taps to electrical devices, phase-to-phase insulating spacers, barrier balls, loops, etc. Concentrated loads mainly act in the vertical plane, and in the case of taps, they can have an almost arbitrary spatial direction. The most accurate methods of mechanical calculation of flexible conductors include methods based on the numerical solution of the equation of wires in the form of a flexible elastic thread. Such an algorithm is implemented in the author's computer program MR21. However, in many cases, simplified methods of mechanical calculation are preferable, as they are available to a wider range of users. The simplified method of mechanical calculation of flexible conductors proposed in the article is based on the equation of state of the wire and allows taking into account concentrated and distributed loads. Various climatic regimes and loads are taken into account using the horizontal and vertical load factors in the calculated and initial modes. Expressions are proposed for calculating the above coefficients for any number of taps in a span and with an accurate approach to taking into account their spatial arrangement. Formulas for calculating sag and horizontal deflections of conductors are given, too. The MR21 computer program, tested earlier, has been used in this work as a tool for checking the calculation results using the proposed simplified method. 
一种不受抽头数限制的开关设备柔性导线力学计算的简化方法
开关设备和电力线路的柔性导线力学计算的目的是确定支撑结构的垂度、张力和载荷,以及与相邻带电部件的最小距离等参数。计算时应考虑到分布荷载和集中荷载。垂直方向的分布载荷由导线、绝缘子串的重量和绝缘子串上可能的冰沉积决定。水平面上的分布荷载应在有侧风压的气候条件下计算。集中负载由诸如电气设备的抽头、相对相绝缘间隔器、阻挡球、回路等元件产生。集中荷载主要作用在垂直面上,在抽头的情况下,它们几乎可以具有任意的空间方向。最精确的柔性导体力学计算方法包括以柔性弹性线形式的导线方程的数值解的方法。该算法在笔者编写的计算机程序MR21中实现。然而,在许多情况下,简化的机械计算方法是可取的,因为它们可供更广泛的用户使用。本文提出的挠性导体力学计算的简化方法以导线的状态方程为基础,考虑集中载荷和分布载荷。利用计算模态和初始模态中的水平和垂直荷载因子,考虑了各种气候条件和荷载。对于跨度中任意数量的抽头,提出了计算上述系数的表达式,并采用了考虑其空间排列的精确方法。并给出了导线垂向和水平挠度的计算公式。先前测试的MR21计算机程序已用于本工作,作为使用所提出的简化方法检查计算结果的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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