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Prediction of Aeolian Vibration on Transmission-Line Conductors Using a Nonlinear Time History Model—Part II: Conductor and Damper Model

机译:使用非线性时程模型预测传输线导体上的风振-第二部分:导体和阻尼器模型

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摘要

Various numerical tools have been developed to predict the level of aeolian vibrations for a damped span of transmission-line conductors. In part I of this study, nonlinear time history models of two types of transmission-line dampers were developed. In this paper, a model for the complete conductor-damper system is presented. When combined with empirical equations for wind power input and conductor self-damping using the Energy Balance Principle, the direct integration time history model proposed allows the prediction of the vibration amplitudes expected on a damped span. The amplitudes predicted by the model compare well to experimental data sets available in the literature. Since the damper is modelled from its mechanical properties of geometry, mass, stiffness, and damping, the optimization of a conductor-damper system can be done easily with this model, without additional experimental tests. A sensitivity analysis is conducted to demonstrate the capabilities of the model.
机译:已经开发出各种数值工具来预测传输线导体的阻尼跨度的风振振动水平。在本研究的第一部分中,开发了两种类型的传输线阻尼器的非线性时程模型。本文提出了一种完整的导体-阻尼器系统模型。当结合使用能量平衡原理的风能输入和导体自阻尼的经验方程式时,提出的直接积分时程模型可以预测在阻尼跨度上预期的振动幅度。该模型预测的振幅与文献中提供的实验数据集比较良好。由于阻尼器是根据其几何形状,质量,刚度和阻尼的机械特性建模的,因此无需额外的实验测试,就可以使用该模型轻松完成导体-阻尼器系统的优化。进行敏感性分析以证明模型的功能。

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