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Design and Simulation of a Railway Vehicle for the Transport of People with Reduced Mobility

机译:行动不便的铁路车辆的设计与仿真

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One of the most important aspects of the design activity of passenger railway vehicles is the optimization of the comfort level that is often in contrast with other requirements, such as low weight, to reduce energy consumption, and high and flexible seating capacity. Due to the coach weight reduction, the car body structure becomes more susceptible to structural vibrations that affect the passenger comfort. In modern vehicles, seats are important elements to achieve the desired comfort, but in order to design and estimate the actual comfort level, the whole system must be considered, including the track excitations, a vehicle detailed dynamic model, and the coach and the seat flexibility. This paper describes a numerical model of a double-deck vehicle developed using a MB code that considers measured track irregularities, a detailed vehicle model, and a transfer function of the seat obtained by experimental tests on an optimized seat. In order to make the numerical model more realistic, the coach has been modeled as a flexible body to consider the effect of its natural frequencies. The work has been performed within the “CARITAS” project, whose aim is the design of a high comfort vehicle for people with reduced mobility.
机译:铁路客运车辆设计活动中最重要的方面之一是舒适度的优化,这通常与其他要求形成对比,例如重量轻,减少能耗以及高灵活的座位容量。由于客车重量的减轻,车身结构更容易受到影响乘客舒适度的结构振动的影响。在现代车辆中,座椅是获得理想舒适度的重要元素,但为了设计和估算实际舒适度,必须考虑整个系统,包括轨道激励,车辆详细动态模型以及长途汽车和座椅灵活性。本文介绍了使用MB代码开发的双层车辆的数值模型,该模型考虑了测得的赛道不规则性,详细的车辆模型以及通过对优化座椅进行实验测试而获得的座椅传递函数。为了使数值模型更加逼真,已将教练建模为一个灵活的主体,以考虑其固有频率的影响。该工作已在“ CARITAS”项目中完成,该项目的目的是为行动不便的人们设计一种高舒适度的车辆。

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