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首页> 外文期刊>KSCE journal of civil engineering >Numerical Analysis on Buffeting Performance of a Long-Span Four-Tower Suspension Bridge Using the FEM Model
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Numerical Analysis on Buffeting Performance of a Long-Span Four-Tower Suspension Bridge Using the FEM Model

机译:使用FEM模型的长跨度四塔悬架桥的自助性性能的数值分析

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摘要

The multi-tower suspension bridge (MTSB), which is a considerable choice for the cross-river and even cross-sea bridges, has attracted intensive attentions by researchers in recent years. However, the static and dynamic performance of the MTSB becomes more complicated due to its super long spans and the multiple middle towers. The wind-induced vibration becomes the critical issue when constructs the MTSBs due to their low rigidity. In this work, a finite element model (FEM) of a MTSB with four towers and three spans is presented. Several major parameters such as the stiffness of the main girder and the middle towers, the sag-to-span ratios, the self-excited forces, and the spectral model of turbulence are selected to investigate their effects on buffeting performance of the MTSB. Results show that the rigid main girder can decrease the buffeting displacements in lateral and torsional directions, while the vertical buffeting displacement significantly decreases with the increasing stiffness of middle towers. In addition, the buffeting displacements of the main girder increase with the decreasing sag-to-span ratio. Besides, it can be concluded that the self-excited forces should be considered and the turbulent power spectrum should be carefully chosen in analyzing buffeting responses of the MTSB.
机译:多塔悬架桥(MTSB)是跨河甚至跨海桥的相当大选择,近年来研究了研究人员的密集关注。然而,由于其超长跨度和多个中塔,MTSB的静态和动态性能变得更加复杂。由于其低刚性,风致振动成为构建霉菌的临界问题。在这项工作中,提出了具有四个塔和三个跨度的MTSB的有限元模型(FEM)。选择诸如主要梁和中塔的刚度,下距离比率,自我激发力和湍流的光谱模型等几个主要参数,以研究它们对MTSB的饮用性能的影响。结果表明,刚性主梁可以降低横向和扭转方向的抖动位移,而垂直抖动位移随着中塔的刚度越来越大而显着降低。此外,主要梁的缓冲位移随着落坡率的降低而增加。此外,可以得出结论,应该考虑自我激发力,并且应在分析MTSB的饮用响应时仔细选择湍流功率谱。

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