地基沉降条件下高速列车在过渡带上运行的乘车安全预测

IF 4 2区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Borong Peng , Xuhui He , Lei Xu , Zheng Li , Yunlong Guo
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引用次数: 0

摘要

桥墩沉降和路基弯曲变形是高速铁路桥梁过渡区的常见问题。本研究旨在研究这些过渡区内的沉降行为及其对列车与轨道之间动态相互作用的影响。为此,我们建立了一个车辆-轨道-过渡区映射关系模型,以分析沉降行为和由此产生的动态响应特性。研究采用有限元法和多体动力学来构建仿真模型。沉降效应采用牛顿-拉斐森迭代法进行模拟,地基沉降引起的附加轨道变形作为车辆-轨道-过渡区动态交互系统的激励。在数值分析中,根据车辆-轨道-过渡区相互作用的性能,研究了三个关键因素(列车速度、过渡区长度和地基沉降幅度)的动态影响。利用时频技术全面揭示并阐明了受沉降激励影响的系统响应的空间频率特征。此外,还校准了基于安全的沉降阈值与这三个因素之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Riding safety prediction of a high-speed train running on transition zone under foundation settlement

The settlement of piers and subgrade bending deformation are widely recognized as common issues in the transition zones of high-speed railway bridges. This study aims to investigate the settlement behavior within these transition zones and its impact on the dynamic interaction between trains and the track. To achieve this, a vehicle-track-transition zone mapping relationship model is developed to analyze both the settlement behavior and the resulting dynamic response characteristics. The study employs the finite element method and multi-body dynamics to construct the simulation model. Settlement effects are simulated using the Newton-Raphson iterative method, with the additional rail deformation caused by foundation settlement serving as the excitation for the vehicle-track-transition zone dynamic interaction system. In the numerical analysis, the dynamic effects of three key factors—train speed, transition zone length, and the amplitude of foundation settlement—are examined based on the performance of the vehicle-track-transition zone interaction. The time-frequency technique is utilized to comprehensively reveal and clarify the spatial-frequency characteristics of system responses influenced by settlement excitation. Moreover, the relationship between the safety-based settlement threshold and these three factors is calibrated.

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来源期刊
Advances in Engineering Software
Advances in Engineering Software 工程技术-计算机:跨学科应用
CiteScore
7.70
自引率
4.20%
发文量
169
审稿时长
37 days
期刊介绍: The objective of this journal is to communicate recent and projected advances in computer-based engineering techniques. The fields covered include mechanical, aerospace, civil and environmental engineering, with an emphasis on research and development leading to practical problem-solving. The scope of the journal includes: • Innovative computational strategies and numerical algorithms for large-scale engineering problems • Analysis and simulation techniques and systems • Model and mesh generation • Control of the accuracy, stability and efficiency of computational process • Exploitation of new computing environments (eg distributed hetergeneous and collaborative computing) • Advanced visualization techniques, virtual environments and prototyping • Applications of AI, knowledge-based systems, computational intelligence, including fuzzy logic, neural networks and evolutionary computations • Application of object-oriented technology to engineering problems • Intelligent human computer interfaces • Design automation, multidisciplinary design and optimization • CAD, CAE and integrated process and product development systems • Quality and reliability.
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