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Behavior of Four-Line High-Speed Railway Bridge with Two Main Trusses and K-Shaped Brace

机译:四线高速铁路桥与k形支撑的四线高速铁路桥

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Taking Jinan Yellow River Bridge as an example, using 3D finite element method, displacement and behavior of four-line high-speed railway bridge with two main trusses, K-shaped brace and middle suspender is studied. The results show that transversal wave of displacement of floor system is significant, and the difference of the displacement in transversal direction reaches 6 mm. The causes includes: large distance between two main trusses, large stiffness of stringers, longitudinal stiffeners and crossbeams, weak transversal stiffeners which do not connect to lower chords. About 90% of the loads are transferred to the crossbeam through path 1 and about 60% to 80% of these loads through K-shaped braces. Less than 10% of the loads transferred to lower chords through path 2.
机译:研究了济南黄河桥,以3D有限元法,采用3D有限元方法,四线高速铁路桥与两个主桁架,K形支撑和中间挂销的位移和行为。结果表明,地板系统的位移横向波是显着的,并且横向方向上位移的差异达到6毫米。原因包括:两个主桁架之间的大距离,桁条的大刚度,纵向加强件和横梁,弱横向加强件,不连接到下部和弦。大约90%的负载通过路径1和约60%至80%的负载通过K形括号转移到横梁。通过路径2将少于10%的负载转移到下部和弦。

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