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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Effects of co-spectral densities of atmospheric turbulence on the dynamic response of cable-supported bridges: A case study
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Effects of co-spectral densities of atmospheric turbulence on the dynamic response of cable-supported bridges: A case study

机译:大气湍流共谱密度对斜拉桥动力响应的影响:案例研究

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This study deals with the importance of the co-spectral density of the horizontal and vertical turbulence components when predicting the wind-induced dynamic response of long-span bridges. The simultaneous measurements of turbulence and response accelerations of the Sotra Bridge are investigated. A turbulence model including the cross-spectral density of the horizontal and vertical components is fitted to the turbulence measurements. This turbulence model is used to predict the standard deviations of the wind-induced accelerations of the Sotra Bridge. The predicted response is compared to the measurements, and it is concluded that the predicted horizontal response is closer to the measured response values if the co-spectral density of the turbulence components are included. The vertical response was not affected by the co-spectral density of the horizontal and vertical turbulence components. It is concluded that the influence on the predicted response is observable, but the contribution is low compared to the overall uncertainty in the modelling of the wind field.
机译:当预测大跨度桥梁的风动力响应时,这项研究处理了水平和垂直湍流分量的共谱密度的重要性。研究了Sotra桥的湍流和响应加速度的同时测量。包含水平和垂直分量的交叉谱密度的湍流模型适用于湍流测量。该湍流模型用于预测Sotra桥的风致加速度的标准偏差。将预测的响应与测量结果进行比较,可以得出结论,如果包括湍流分量的同谱密度,则预测的水平响应将更接近于测量的响应值。垂直响应不受水平和垂直湍流分量的共谱密度影响。结论是,对预测响应的影响是可观察到的,但与风场建模中的整体不确定性相比,影响很小。

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