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Buffeting Analysis of a Cable-Stayed Bridge Using Three-Dimensional Computational Fluid Dynamics

机译:三维计算流体动力学对斜拉桥的抖振分析

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摘要

In recent years, a number of studies have been conducted to analyze wind-induced vibrations of a bridge using computational fluid dynamics (CFD). Previous studies have been limited to analyzing two-dimensional sections only, and three-dimensional (3D) analyses of entire bridges have not yet been performed. In this study, a CFD program with fluid-structure interaction is developed to perform buffeting analysis of a 3D cable-stayed bridge. The FEM formulated by the Galerkin least-squares method and arbitrary Lagrangian-Eulerian method are used to perform fluid-structure interaction CFD. The spectral representation method is used to generate the time series turbulence, which is applied to the inlet boundary condition. A supercomputer is used to reduce the large computing time. The analysis model of an existing cable-stayed bridge, which contains an ambient atmospheric region, has been used to calculate the dynamic responses of bridges and the detailed flow of wind. The results of the 3D CFD analysis of the bridge are compared with the results of conventional frequency domain buffeting analysis. The results are essentially in good agreement with those of the conventional analysis. The numerical method developed in this study will be an efficient alternative to wind tunnel tests for verifying wind flow, wind loading, and structural vibrations.
机译:近年来,已经进行了许多研究,以使用计算流体力学(CFD)分析桥梁的风致振动。先前的研究仅限于分析二维截面,尚未对整个桥梁进行三维(3D)分析。在这项研究中,开发了具有流体-结构相互作用的CFD程序来执行3D斜拉桥的抖振分析。通过Galerkin最小二乘法和任意Lagrangian-Eulerian方法制定的有限元方法用于执行流固耦合CFD。频谱表示法用于生成时间序列湍流,并将其应用于入口边界条件。超级计算机用于减少大量的计算时间。现有的斜拉桥的分析模型(包含一个周围的大气区域)已用于​​计算桥梁的动力响应和详细的风向。将桥梁的3D CFD分析结果与常规频域抖振分析结果进行比较。结果与传统分析基本吻合。本研究中开发的数值方法将是风洞测试的有效替代方法,用于验证风量,风荷载和结构振动。

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