兰格型钢-混凝土铁路桥梁在移动荷载作用下的动力分析

Waldemar Szaniec, Urszula Radoń, Adrián Bekő
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引用次数: 0

摘要

研究兰格型钢-混凝土铁路桥梁在高速列车荷载作用下的动力响应,对保证这种结构的安全具有重要意义。在设计阶段的数值模拟需要模态特性的知识:固有频率,形状和阻尼。此外,在高速列车作用下的铁路桥梁动力学中,校核动力效应对桥梁极限状态和使用极限状态的影响是非常重要的。作为研究的一部分,分析了试验车辆行驶时所选测点的位移和加速度。第一阶段,在机器人程序中对两种质量描述变量(分布和离散)进行特征值和相应特征向量的计算。在第二阶段,利用作者的程序MES3D,根据测量点的位移和加速度,研究了不同车速下的动态列车通道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DYNAMIC ANALYSIS OF A STEEL-CONCRETE RAILWAY BRIDGES OF LANGER TYPE UNDER THE INFLUENCE OF A MOVING LOAD
The studying the dynamic response of steel-concrete railway bridges of Langer type is huge importance of ensuring the safety of such structures under high-speed train loads. Numerical simulations at the design stage require knowledge of the modal characteristics: natural frequencies, shapes and damping. In addition, in the dynamics of railway bridges subjected to high-speed trains, it is important to check the impact of dynamic effects on the ultimate and serviceability limit states. As part of the investigations displacements and accelerations of selected measurement points arising from driving the test rolling stock are analyzed. In the first stage, calculations of the eigenvalues and the corresponding eigenvectors were carried out in the Robot program for two variants of mass description (distributed and discrete). In the second stage, dynamic train passages for various vehicle speeds were examined in terms of displacements and accelerations of measurement points by using the authors’ program MES3D.
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