NORMAL VIBRATIONS OF SAGGING CONDUCTORS OF OVERHEAD POWER LINES

A. Valiullin, A. Danilin, Valery Feldshteyn
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Abstract

The phenomenon of self-excitation of thermomechanical vibrations of current-carrying conductors, experimentally discovered by academician A.F. Ioffe, is of practical interest as a possible explanation of the phenomenon of galloping conductors of overhead power transmission lines (OHL) – low-frequency vibrations with frequencies of ~ 1 Hz and with amplitudes of the order of the static conductor sagging. To build the theoretical foundations of this phenomenon, as a special class of self-oscillating systems, it is necessary, first of all, a model of conductor vibrations in the OHL span. With regard to the most studied type of conductor vibrations, high-frequency aeolian vibration, excited by sign-alternating aerodynamic forces from the Karman vortex street, the classical model of a straight string is reasonably applied. However, to study low-frequency vibrations of the galloping type, it is necessary to take into account the effect of sagging of the conductor, the associated elastic tension and, in some cases, the nonlinear nature of the vibrations. The article presents two models for calculating the natural vibrations of sagging conductors (cables) within the framework of the technical theory of flexible threads, assuming the constancy of the tension force along the length. The first model describes linear oscillations of an elastic conductor in the sagging plane. For a system of equations with respect to the displacement components given in natural coordinates, an exact solution of the Sturm-Liouville problem with estimates of the frequency ranges arising is obtained. The second model describes nonlinear vibrations of an elastic conductor in the sagging plane and pendulum vibrations accompanied by an exit from it. The solution of the problem is based on the principle of possible displacements using the Ritz method. The structure of the frequency spectrum and the natural forms of transverse vibrations are studied. The developed models are intended for further investigation of thermomechanical vibrations of conductor and flexible cable systems.
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架空电线下垂导线的正常振动
Ioffe院士在实验中发现的载流导体热机械振动的自激现象,可能解释架空输电线路(OHL)导线的驰动现象——频率为~ 1hz的低频振动,其振幅与静态导体下垂的数量级相当。为了建立这一现象的理论基础,作为一类特殊的自振荡系统,首先需要在OHL跨度中建立导体振动模型。对于研究最多的导体振动类型,即由卡门涡街的符号交替气动力激发的高频风成振动,可以合理地应用经典的直弦模型。然而,为了研究驰振型的低频振动,有必要考虑导体下垂的影响,相关的弹性张力,在某些情况下,振动的非线性性质。本文在软螺纹技术理论的框架下,提出了两种计算下垂导线(电缆)固有振动的模型,假设拉力沿长度方向恒定。第一个模型描述弹性导体在下垂平面上的线性振荡。对于一个以自然坐标给出的位移分量方程组,得到了Sturm-Liouville问题的精确解,并给出了频率范围的估计。第二个模型描述了弹性导体在下垂平面上的非线性振动和钟摆振动。该问题的解决是基于使用里兹方法的可能位移原理。研究了振动的频谱结构和横向振动的自然形式。所建立的模型是为了进一步研究导体和柔性电缆系统的热机械振动。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
43
审稿时长
4 weeks
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