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Evaluation of passenger riding comfort of a rail vehicle by means dynamic simulations

机译:通过动态仿真评估铁路车辆乘客的乘坐舒适度

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Dynamical analysis plays a key role in development and optimalization of rail vehicles. The article deals with simulation analysis of a rail vehicle with an active tilting system of the vehicle body, design of the rail vehicle in CAD program CATIA and dynamical analysis in program SIMPACK, with the RAIL expansion. Such body mounting on vehicle bogies is significantly more complicated than the design of conventional rail vehicles. The purpose of this type of body mounting is to increase the size of body tilt during ride in a curve and thus reduce the lateral unbalanced acceleration affecting the passengers, or allow higher driving speed in a curve with the same radius while keeping the lateral acceleration value respectively. Eight variants of different velocity, vehicle occupancy and setting of the tilting mechanism were analyzed. We determined the average value of passenger comfort from the simulation results. We have determined the value of passenger comfort during the ride in a curve from the simulation results.
机译:动力学分析在铁路车辆的开发和优化中起着关键作用。这篇文章涉及具有车身主动倾斜系统的轨道车辆的仿真分析,CAD程序CATIA中的轨道车辆设计以及SIMPACK程序中的动力学分析以及RAIL扩展。这样的车身安装在车辆转向架上比传统的轨道车辆的设计要复杂得多。这种类型的车身安装的目的是增加弯道行驶过程中车身倾斜的大小,从而减少影响乘客的横向不平衡加速度,或者在保持相同的半径的同时允许较高的行驶速度,同时保持横向加速度值分别。分析了八个不同速度,车辆占用和倾斜机构设置的变体。我们根据仿真结果确定了乘客舒适度的平均值。我们已经根据模拟结果确定了乘坐过程中的乘客舒适度值。

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