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Dynamic Response Analysis of the Straddle-Type Monorail Bridge–Vehicle Coupling System

机译:跨式单轨桥车耦合系统的动力响应分析

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Abstract An analytical procedure of dynamic interaction analysis of the straddle monorail bridge–vehicle coupling system is proposed in this paper based on the finite element method and energy method. The calculation procedure is programmed with VB language for the solution of the governing motion equations of the straddle-type monorail bridge–vehicle coupling system. The effects of speed, three kinds of loads and different radius of curvature on dynamic responses of the monorail bridge–vehicle coupling system are analyzed. The simulation indicates that vertical vibration amplitude of the track beam decreases while the lateral amplitude increases with the increase in the radius of the curvature; the maximum value in lateral and vertical direction is 0.075 and 0.43?mm, respectively; and the maximum amplitude (lateral and vertical) and acceleration (lateral and vertical) are 0.69, 0.046?mm, 0.15 and 0.62?m/s_(2), respectively, at the speed of 80?km/h. The vibration amplitude (lateral and vertical) and vertical acceleration increase with the increasing load, and the maximum values are 0.041, 0.43?mm and 0.44?m/s_(2), respectively. The lateral acceleration is not easily?affected by?the load conditions.
机译:摘要本文基于有限元法和能量法,提出了跨式单轨桥梁-车辆耦合系统动力相互作用分析的解析程序。计算程序使用VB语言编程,用于求解跨骑式单轨桥梁-车辆耦合系统的控制运动方程。分析了速度,三种载荷和不同曲率半径对单轨桥梁-车辆耦合系统动力响应的影响。仿真表明,随着曲率半径的增大,轨道梁的垂直振动幅度减小,而横向幅度增大。横向和垂直方向的最大值分别为0.075和0.43?mm。在80?km / h的速度下,最大振幅(横向和垂直)和加速度(横向和垂直)分别为0.69、0.046?mm,0.15和0.62?m / s_(2)。振动振幅(横向和纵向)和纵向加速度随着载荷的增加而增加,最大值分别为0.041、0.43?mm和0.44?m / s_(2)。横向加速度不易受载荷条件的影响。

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