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铁路动力学仿真技术的开发
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作者 彭惠民(译) 刘宏友(校) 《国外铁道车辆》 2021年第4期5-8,共4页
介绍了日本铁道综合技术研究所关于铁路动力学领域数值仿真技术的最新研究概况。
关键词 铁路动力学 仿真技术 研究 日本
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日本铁路动力学的研发现状
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作者 周贤全(译) 刘宏友(校) 《国外铁道车辆》 2020年第2期1-4,共4页
介绍了日本在接触网、铁道车辆、轨道和结构方面数值分析和试验的最新研发进展情况,包括接触网与受电弓的相互作用、轮轨滚动接触的分析与测试以及控制轮重减载转向架、低成本梯形轨枕的开发等。阐述了应用先进的高性能计算(HPC)技术对... 介绍了日本在接触网、铁道车辆、轨道和结构方面数值分析和试验的最新研发进展情况,包括接触网与受电弓的相互作用、轮轨滚动接触的分析与测试以及控制轮重减载转向架、低成本梯形轨枕的开发等。阐述了应用先进的高性能计算(HPC)技术对铁路仿真器进行开发的概况。 展开更多
关键词 铁路动力学 开发 日本
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行车作用下盾构隧道下穿框架桥梁耦合动力学特征 被引量:5
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作者 朱仔旭 徐庆元 +4 位作者 刘维正 孙康 朱雪燕 王炫钧 金浩然 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第7期2788-2798,共11页
为分析行车作用下盾构隧道下穿既有铁路框架桥梁结构的耦合动力学影响,基于铁路大系统动力学与有限元理论,建立列车-有砟轨道-框架桥梁-土体-盾构隧道耦合动力学模型,研究不加固地层和加固地层开挖完成后所引起的既有铁路框架桥梁结构... 为分析行车作用下盾构隧道下穿既有铁路框架桥梁结构的耦合动力学影响,基于铁路大系统动力学与有限元理论,建立列车-有砟轨道-框架桥梁-土体-盾构隧道耦合动力学模型,研究不加固地层和加固地层开挖完成后所引起的既有铁路框架桥梁结构的沉降变形规律,引入ABAQUS■-MATLAB■联合仿真、时变耦合和多步长动力迭代求解策略,对盾构隧道下穿和行车作用耦合效应下既有铁路结构的动力响应进行数值仿真,分析和评估耦合效应下的列车动力学行为和行车性能。研究结果表明:相对框架桥梁不对称下穿,盾构隧道导致结构沉降变形呈不对称分布,左线先行开挖引起的沉降大于右线的沉降;加固地层能够减小盾构开挖引起的沉降变形和车致振动位移,但会增大车致振动加速度及框架桥梁应力;盾构开挖对列车运行造成附加影响,系统动力响应、车辆运行安全性和平稳性指标都与运行速度呈正相关,速度超过120 km/h后有跳轨风险;在速度为160 km/h时,车体振动附加影响增幅可达到136.03%。在施工过程中,应注意加固开挖造成的车致振动加速度增大现象,同时应当考虑降速通过盾构隧道下穿区段。 展开更多
关键词 铁路大系统动力学 盾构隧道下穿 沉降变形 框架桥梁 有限元数值分析 联合仿真
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铁路动力学最新研发成果
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作者 Mitsuru IKEDA 刘颖 《国外铁道机车与动车》 2018年第1期45-48,共4页
铁路动力学主要探索由铁路系统自身特征所引起的动力学问题的技术解决方案。日本铁路综合技术研究所(RTRI)一直致力于解决铁路领域诸多动力学问题。为了加快研发进度,自2010年以来,RTRI一直致力于应用高性能计算技术开发"铁路仿真... 铁路动力学主要探索由铁路系统自身特征所引起的动力学问题的技术解决方案。日本铁路综合技术研究所(RTRI)一直致力于解决铁路领域诸多动力学问题。为了加快研发进度,自2010年以来,RTRI一直致力于应用高性能计算技术开发"铁路仿真器"形式的逻辑仿真工具。该仿真器研究主要集中在边界区域的相互作用,如车轮/钢轨/轨道结构、受电弓/接触网等等。主要介绍了当前该领域的研究活动,包括专门以实现更安全、更可靠的铁路系统为目标的铁路仿真器的开发。 展开更多
关键词 铁路动力学 仿真 接触现象 运行安全 地震
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铁路动力学数值模拟技术的最新研发进展
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作者 刘志荣(译) 于伟业(校) 《国外铁道机车与动车》 2022年第1期5-8,29,共5页
铁路由接触网、车辆、轨道和工程结构组成,由于这些部件之间的相互作用而显现出复杂的动力学性能。RTRI的铁路动力学部负责所有与铁路部件动力学相关的领域,并开展旨在提高铁路安全性和可维护性的研发工作。该部门的主要任务是应用先进... 铁路由接触网、车辆、轨道和工程结构组成,由于这些部件之间的相互作用而显现出复杂的动力学性能。RTRI的铁路动力学部负责所有与铁路部件动力学相关的领域,并开展旨在提高铁路安全性和可维护性的研发工作。该部门的主要任务是应用先进的数值模拟技术和高性能计算技术开发铁路模拟器。文章介绍了铁路动力学数值模拟技术的最新研发概况。 展开更多
关键词 铁路动力学 模拟 相互作用 耦合分析 接触现象
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Peculiarities of Structural Transformations in HAZ Metal of Rail Steel M76 Joint Produced by Flash-Butt Welding
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作者 Georgy Grigorenko Valery Kostin +1 位作者 Victor Zhukov Tetiana Zuber 《Journal of Physical Science and Application》 2016年第5期54-65,共12页
The railway transport is one of the main types of communications in the world. Analysis of service conditions of the most critical elements of the railway transport rolling stock (mils, wheels and tyres) shows that ... The railway transport is one of the main types of communications in the world. Analysis of service conditions of the most critical elements of the railway transport rolling stock (mils, wheels and tyres) shows that one of the main factors determining their reliability and service life is the structural-phase state of steel, which is formed in the process of its producing. Complication of service conditions leads to the more severe requirements, specified by the consumers, where the high level of strength and hardness should be combined with high values of ductility and toughness. Realization of these requirements is possible only at the integrated approach to the improvement of technology of their production on the basis of profound knowledge in kinetics of austenite decay processes of structure formation and its contribution to the mechanical properties. With the formation of mainly bainite-martensite structures in the HAZ (heat-affected zone) metal of welded joints of these steels and saturation of this region with diffusive hydrogen their susceptibility to the cold cracking is increased. In this connection this work presents the results of investigations of effect of the WTC (welding thermal cycles) on the nature of structural transformations, hardness, static strength and resistance to the formation of cold cracks in HAZ metal of high-strength carbon rail steel M76. For this purpose, the structure and kinetics of transformation of an overcooled austenite was studied using the advanced methods of physical materials science by the modeling of phase transformations in the Gleeble 3800 unit. It was found that the cause of reduction in mechanical properties of welded joints of steel M76 is the formation of regions with a completely martensite structure in the amount of up to 5%. Results of investigations will be applied for the optimizing the technology and conditions of FBW of the advanced rail steels. 10 Ref., 4 Tables, 11 Figures. 展开更多
关键词 High-strength carbon rail steel austenite decay ferrite BAINITE martensite.
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Unsteady simulation for a high-speed train entering a tunnel 被引量:10
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作者 Xin-hua LI Jian DENG +2 位作者 Da-wei CHEN Fang-fang XIE Yao ZHENG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第12期957-963,共7页
In order to study the unsteady aerodynamics effects in railway tunnels,the 3D Reynolds average Navier-Stokes equations of a viscous compressible fluid are solved,and the two-equation k-ε model is used in the simulati... In order to study the unsteady aerodynamics effects in railway tunnels,the 3D Reynolds average Navier-Stokes equations of a viscous compressible fluid are solved,and the two-equation k-ε model is used in the simulation of turbulence,while the dynamic grid technique is employed for moving bodies.We focus on obtaining the changing tendencies of the aerodynamic force of the train and the aerodynamic pressures on the tunnel wall and train surface,and discovering the relationship between the velocity of the train and the intensity of the micro pressure wave at the tunnel exit.It is shown that the amplitudes of the pressure changes in the tunnel and on the train surface are both approximately proportional to the square of the train speed,so are the microwave and the drag of the train. 展开更多
关键词 High-speed train AERODYNAMICS Railway tunnel Numerical analysis
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Study on the critical diameter of the subway tunnel based on the pressure variation 被引量:4
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作者 SUN ZhenXu YANG GuoWei ZHU Lan 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第10期2037-2043,共7页
When the subway train operates at a speed higher than 100 km/h,the corresponding aerodynamic issue becomes severe.To meet the future requirement for the speedup of subway trains,a research on the critical diameters of... When the subway train operates at a speed higher than 100 km/h,the corresponding aerodynamic issue becomes severe.To meet the future requirement for the speedup of subway trains,a research on the critical diameters of the subway tunnel for trains operating at 120 and 140 km/h has been performed based on passengers’aural discomfort caused by rail tunnel pressure variation.A three-dimensional computational fluid dynamic approach has been adopted for analysis.Meanwhile,trains with different airtight indices are considered and the pressure variations inside and outside the trains are both under investigation.Based on the corresponding criteria for different airtight indices,critical tunnel diameters for trains running at different speeds have been determined.This study would aid in the tunnel section design for future high-speed subway trains. 展开更多
关键词 tunnel pressure waves airtight index aural discomfort blockage ratio
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