The Developed Analytical Model Used to Evaluate the Dynamic Behaviour of Power Line Conductors

E. Ojo
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Abstract

The dynamic behaviour of Transmission line conductors is a subject of interest to power line designer. This phenomenon occurs as a result of the aerodynamic effects of vortex shedding that induces a transverse displacement. The behaviour of conductors when subjected to dynamic forces is not completely understood and this has necessitated the need for continuous investigations by researchers. Hence, various analytical, numerical and experimental models have evolved over the years to try and predict the concept of wind-induced vibration on power line conductors. This paper presents the developed analytical model that describes the dynamic response of conductors to the dynamic forces such a wind loading. The model presented, modelled the conductor as a continuous distributed parameters of a beam and this was used to evaluate the dynamic response of conductors. The conductor responses were obtained from the developed transfer function, implemented in a sweep manner to capture the resonance frequencies. A replica scenario of the sweep tests were conducted in the laboratory with the same loading conditions. To validate the model, the test results were compared with the developed analytical model. The comparison showed some degree of agreement.
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电力线导体动态特性分析模型的建立
传输线导体的动态特性是电力线设计者感兴趣的课题。这种现象的发生是由于涡旋脱落引起横向位移的气动效应。导体在受到动力作用时的行为尚不完全清楚,这就需要研究人员进行持续的研究。因此,多年来已经发展出各种分析、数值和实验模型来尝试和预测电力线导体上的风致振动概念。本文提出了描述导体在风荷载等动力作用下的动力响应的分析模型。该模型将导体建模为连续分布的梁参数,并用于评价导体的动态响应。导体响应从开发的传递函数中获得,以扫描方式实现以捕获谐振频率。在相同的加载条件下,在实验室进行了扫描试验的复制场景。为了验证该模型,将试验结果与所建立的分析模型进行了比较。这种比较显示出某种程度的一致。
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