侧风
磁道(磁盘驱动器)
蒙特卡罗方法
空气动力
空气动力学
振动
工程类
非线性系统
有限元法
控制理论(社会学)
模拟
结构工程
计算机科学
航空航天工程
物理
声学
数学
机械工程
控制(管理)
人工智能
统计
量子力学
标识
DOI:10.1080/00423114.2018.1469775
摘要
A stochastic mathematical model is developed to evaluate the dynamic behaviours and statistical responses of vehicle–track systems when random system excitations including crosswinds and track irregularities are imposed. In this model, the railway vehicle is regarded as a multi-rigid-body system, the track system is modelled by finite element theory. These two systems are spatially coupled by the nonlinear wheel–rail contact forces and unsteady aerodynamic forces. The high efficiency and accuracy of this stochastic model are validated by comparing to the robust Monte-Carlo method. Numerical studies show that crosswinds have a great influence on the dynamic performance of vehicle–track systems, especially on transverse vibrations. When the railway vehicle initially runs into the wind field, it will experience a severe vibration stage, and then stepping into a relatively steady state where the fluctuating winds and track irregularities will play deterministic roles in the deviations of system responses. Moreover, it is found that track irregularities should be properly considered in the safety assessment of the vehicle even in strong crosswinds.
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