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Analysis of buffeting response of hinged overhead transmission conductor to nonstationary winds

机译:铰接式架空传输导体对非平稳风的抖振响应分析

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This paper addresses analysis of dynamic buffeting response of a hinged transmission line (conductor) under nonstationary wind excitations. The nonstationary wind speed is characterized by deterministic time-varying mean and stochastic fluctuating components. The wind load on the conductor is quantified using quasi-steady theory. The wind-induced response of the conductor is decomposed into deterministic time-varying mean and stochastic dynamic components. The time-varying mean response is determined by nonlinear static analysis with an analytical solution. The stochastic dynamic response is determined through quasi-static analysis in terms of influence function around the time-varying mean equilibrium. A closed-form formulation is presented for calculating time-varying standard derivation of response. The cumulative distribution function of the extreme response over a given time duration is then calculate using mean uperossing rate theory of nonstationary random process. The effectiveness and accuracy of the proposed analytical framework are verified through response time history analysis using a nonlinear finite element model. The response characteristics of conductor under various nonstationary winds are examined through a parametric study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了在非平稳风激励下铰链式传输线(导体)的动态抖振响应分析。非平稳风速的特征在于确定的时变均值和随机波动成分。使用准稳态理论对导体上的风荷载进行量化。导体的风感应响应被分解为确定的时变平均值和随机动态分量。时变平均响应由非线性静态分析和解析解确定。随机动态响应是通过准静态分析根据围绕时变平均平衡的影响函数确定的。提出了一种封闭形式的公式,用于计算响应的时变标准推导。然后使用非平稳随机过程的平均上升率理论计算给定持续时间内极端响应的累积分布函数。通过使用非线性有限元模型的响应时间历史分析,验证了所提出分析框架的有效性和准确性。通过参数研究检查了导体在各种非平稳风中的响应特性。 (C)2017 Elsevier Ltd.保留所有权利。

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