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Analysis of Ride Comfort of a High-Speed Train Based on a Coupled Track-Train-Seat-Human Model with Lateral, Vertical and Roll Vibrations

机译:基于横向,垂直和滚动振动的耦合轨道系座 - 座位模型的高速列车乘坐舒适性分析

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To study the ride comfort of a high-speed train running at a constant speed on a tangent track, a 3D rigid-flexible coupled track-train-seat-human model was developed. The flexible carbody model consisted of six plates with out-of-plane and in-plane vibrations interconnected by artificial springs, and was calibrated using a modal test available in a published paper. The ride comfort was evaluated by total equivalent acceleration calculated by the weighted root-sum-of-square of the weighted root-mean-square of lateral, vertical and roll accelerations at the feet, seat-buttock and human-backrest interfaces. It was concluded the track rigidity had the most influence on lateral, vertical and roll vibrations of the floor above 16 Hz, but had no obvious influence on ride comfort. The flexible carbody model showed intensified floor vibration in lateral, vertical and roll directions above 8 Hz compared with the rigid one, so rigid carbody model caused great underestimation of total equivalent acceleration. The total equivalent acceleration showed increasing tendency as increasing speed. For symmetrical seat positions, the equivalent accelerations showed analogous tendency as the speed. The ride comfort at the carbody center and close to the ends was the worst. Regardless of the seat position and speed, vertical acceleration on the seat pan was the most severe, followed by the vertical acceleration at the feet. The neighbouring subject usually resulted in reduced total equivalent acceleration. The damping of the carbody effectively reduced the total equivalent acceleration for every speed. The effect of the suspension stiffness and damping on ride comfort was also studied.
机译:为了研究以恒定速度运行的高速列车在切线轨道上运行的乘坐舒适性,开发了一个3D刚性柔性的耦合轨道座位 - 人体模型。柔性车身模型由六个板组成,具有由人造弹簧互连的面外平面和面内振动,并使用发布的纸张中可用的模态试验进行校准。通过由脚部,座椅臀部和人靠接口的加权根均线的加权根 - 平均方形的加权根 - 平均正方形的加权根总和 - 平方的总等值加速度评估乘坐舒适度。它的结论是轨道刚度对16赫兹以上地板的横向,垂直和滚动振动的影响最大,但对乘坐舒适性没有明显影响。柔性车身模型与刚性的横向,垂直和滚动方向的横向,垂直和滚动方向增强的地板振动,因此刚性的车身模型引起了极大地低估了总等值加速度。总等价加速度显示出速度增加的趋势增加。对于对称座椅位置,等效加速度显示出类似的速度倾向。在车身中心坐舒适,靠近两端是最糟糕的。无论座椅位置和速度如何,座椅平底锅上的垂直加速度最严重,其次是脚垂直加速度。邻近主题通常导致总等效加速度降低。滑动机的阻尼有效地降低了每速速度的总等效加速度。还研究了悬浮刚度和阻尼速度舒适的影响。

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