气体液压能量吸收器的非线性阻抗特性及贵重物品铁路运输的性能预测

IF 1.7 4区 工程技术 Q3 ENGINEERING, CIVIL
Wenlin Wang, Hongyou Liu, Dazhuo Wu, Yongming Wu, Jian Zhao
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引用次数: 0

摘要

研究气体液压能量吸收器(GHEAs)的非线性阻抗特性及其在现代铁路贵重货物运输中的潜在应用很有意义。对高速列车上使用的气体液压能量吸收器进行了基于流体力学的全参数建模,并对气体液压能量吸收器的静态和动态特性进行了数学模型仿真和物理实验。模拟结果和实验结果之间的一致性以及可容忍的偏差验证了非线性数学模型。最后,利用经过验证的 GHEA 模型或传统的 MT-2 摩擦式吸能器模型,对中国快速货运列车进行了纵向列车动力学(LTD)建模和仿真。结果表明,当列车使用 GHEA 而不是 MT-2 吸能器时,列车的耦合器力和车辆加速度明显减小,在列车启动、紧急制动和调车作业等情况下,车辆运行更加平稳;因此,气体液压吸能器具有保护作用,可作为装备快速货运列车运输贵重货物的替代方案。所获得的有关气液吸能器结构、油气特性参数的非线性数学模型对进一步优化气液吸能器的参数设计和优化快速货运列车气液吸能器的规格非常有用和有意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear impedance characteristics of a gas hydraulic energy absorber and performance prediction for railway transportation of valuable goods
It is meaningful to investigate the nonlinear impedance characteristics of gas hydraulic energy absorbers (GHEAs) and their potential application in modern railway transportation of valuable goods. Fluid-mechanics-based full parametric modelling of a GHEA used in a high-speed train is performed, both simulations with the developed mathematic model and physical experiments are carried out on the static and dynamic characteristics of the GHEA. The agreement between the results of the simulation and the experiment with tolerable deviations validates the nonlinear mathematic model. Longitudinal train dynamics (LTD) modelling and simulation of a Chinese rapid freight train with the validated GHEA model or the conventional MT-2 friction-type energy absorber model is finally conducted. The results show that when the train uses GHEAs instead of MT-2 energy absorbers, the coupler forces and vehicle accelerations of the train are significantly reduced, and the vehicles operate more steadily in situations such as train startup, emergency braking and shunting operations; thus, gas hydraulic energy absorber is protective and would be alternative for equipping rapid freight trains for the transportation of valuable goods. The obtained nonlinear mathematic model in terms of the structural, oil and gas property parameters of the GHEA is useful and meaningful in further parameter design optimization of GHEAs and optimal specification of GHEAs for rapid freight trains.
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来源期刊
CiteScore
4.80
自引率
10.00%
发文量
91
审稿时长
7 months
期刊介绍: The Journal of Rail and Rapid Transit is devoted to engineering in its widest interpretation applicable to rail and rapid transit. The Journal aims to promote sharing of technical knowledge, ideas and experience between engineers and researchers working in the railway field.
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