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Evaluation of 2D coupled galloping oscillations of slender structures

机译:细长结构二维耦合奔波振荡的评估

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摘要

The necessary conditions for the occurrence of 2D coupled galloping oscillations and a description of the set of general differential equations for 2D coupled galloping vibrations are established in this paper. A procedure to predict the 2D coupled galloping oscillations is proposed. Wind loading was treated as a stochastic process including mean and fluctuating components caused by atmospheric turbulence. The formulae and the procedure presented permit a better assessment of galloping oscillations of a prismatic structure which has the same natural frequencies-in the directions of the two orthogonal horizontal axes. The effects of turbulence on 2D coupled galloping are investigated. It is shown that 2D coupled galloping oscillations mainly occur in the cross-wind direction. The effect of the turbulence integral scale an the onset wind velocity of 2D coupled galloping oscillations is negligible. However, the turbulence integral scale has certain influences on the rms response both in the along-wind and the cross-wind directions when the wind velocity is equal or close to the onset wind velocity for galloping. An increase in the turbulence integral scale in the range of 10-40 m considered in this paper increases the galloping response. (C) 1998 Elsevier Science Ltd. All rights reserved. References: 23
机译:本文建立了二维耦合奔腾振荡发生的必要条件,并描述了二维耦合奔腾振动的一般微分方程集。该文提出一种预测二维耦合奔波振荡的程序。风荷载被视为一个随机过程,包括由大气湍流引起的平均分量和波动分量。所提出的公式和程序可以更好地评估具有相同固有频率的棱柱形结构的奔腾振荡 - 在两个正交水平轴的方向上。研究了湍流对二维耦合奔驰的影响。结果表明,二维耦合奔腾振荡主要发生在侧风方向。湍流积分尺度和二维耦合奔腾振荡的起始风速的影响可以忽略不计。然而,当风速等于或接近疾驰的起始风速时,湍流积分尺度对沿风和侧风方向的均方根响应都有一定的影响。本文考虑的湍流积分尺度在10-40 m范围内的增加会增加奔腾响应。(C) 1998 Elsevier Science Ltd.保留所有权利。[参考文献: 23]

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