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A STOCHASTIC AND CONTINUOUS MODEL OF AEOLIAN VIBRATIONS OF CONDUCTORS EQUIPPED WITH STOCKBRIDGE DAMPERS

机译:储存储存器的导体的海湾振动随机和连续模型

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Suspended conductors and guard wires of overhead electrical transmission lines (OHL) are prone to aeolian vibrations, resulting from the alternate shedding of vortices in the wake of the cable. These vibrations can occur under light to moderate wind and, whenever not properly controlled, can induce wear damage and fatigue failures of the cables. Nonlinear passive control devices such as Stockbridge dampers, hence, are often installed along the line spans to reduce the vibration severity. The technical approach to the assessment of aeolian vibrations is based on the Energy Balance Method (EBM) and relies on the simplifying assumption of mono-modal oscillations. Typical aeolian vibration records, however, clearly show that several modes can be simultaneously excited due to wind variations in time and along the span. Aiming at overcoming the mono-modal vibration assumption of the EBM, in the present paper wind forces are modeled as a narrow band stochastic process, centered around the Strouhal frequency of the conductor and with arbitrary cross-correlation in space. A new approach, based on the well-known smooth endochronic Bouc-Wen model, is developed to describe the hysteretic dynamic response of Stockbridge dampers. An iterative solution strategy based on a stochastically equivalent linear damper model is then developed to investigate aeolian vibrations of a suspended cable with a Stockbridge damper attached along its length.
机译:悬挂导体和架空电传输线(OHL)的防护线容易发生在电缆之后的涡流的交替脱落所产生的风振。这些振动可能会在光线下发生到中等风,每当没有适当控制时,都可以引起电缆的磨损损坏和疲劳失效。非线性被动控制装置,如库存阻尼器,因此,通常沿着线路跨度安装以减少振动严重程度。 Aeolian振动评估的技术方法基于能量平衡方法(EBM),并依赖于简化单模态振荡的假设。然而,典型的Aeolian振动记录清楚地表明,由于在时间和跨度的风变化,可以同时发生几种模式。旨在克服EBM的单模振振动假设,在本文中,风力被建模为窄带随机过程,围绕导体的斯特鲁频频率和空间中的任意互相关。基于众所周知的顺利提示核心BOUC-WEN模型的一种新方法是为了描述储存阻尼器的滞回动态响应。然后开发了一种基于随机等效线性阻尼模型的迭代解决方案策略,以研究悬挂电缆的空中振动与沿其长度的载体阻尼器。

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