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An algorithm for dynamic vehicle-track-structure interaction analysis for high-speed trains

机译:高速列车动态车轨结构相互作用分析算法

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摘要

The objective of the present work is to develop a robust, yet simple-to-implement algorithm for dynamic vehicle-track-structure-interaction (VTSI) analysis, applicable to trains passing over bridges. The algorithm can be readily implemented in existing bridge analysis software with minimal code modifications. It is based on modeling the bridge and train separately, and coupling them together by means of kinematic constraints. The contact forces between the wheels and the track become Lagrange multipliers in this approach. A direct implementation of such an approach results in spurious oscillations in the contact forces. Two approaches are presented to mitigate these spurious oscillations - (a) a cubic B-spline interpolation of the kinematic constraints in time, and (b) an adaptation of an alternate time integration scheme originally developed by Bathe. Solutions obtained using this algorithm are verified using a generic differential algebraic equation (DAE) solver. Due to high train speeds and possible track irregularities, wheels can momentarily lose contact with the track. This contact separation is formulated as a Linear Complementary Problem (LCP). With this formulation, including contact separation in the analysis amounts to replacing a call to a linear equation solver by a call to an LCP solver, a modification of only two steps of the procedure. The focus of this paper is on the computational procedure of VTSI analysis. The main contribution of this paper is recognizing computational issues associated with time-varying kinematic constraints, clearly identifying their cause and developing remedies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本工作的目的是为动态车辆-轨道-结构-相互作用(VTSI)分析开发一种健壮但易于实现的算法,适用于经过桥梁的火车。该算法可以在现有的桥分析软件中以最少的代码修改轻松实现。它基于分别建模桥梁和火车,并通过运动学约束将它们耦合在一起的基础。在这种方法中,车轮与轨道之间的接触力成为拉格朗日乘数。这种方法的直接实施导致接触力的虚假振荡。提出了两种减轻这些虚假振荡的方法-(a)时间运动学约束的三次B样条插值,以及(b)Bathe最初开发的替代时间积分方案的改编。使用通用微分代数方程(DAE)求解器验证使用此算法获得的解。由于高火车速度和可能的轨道不规则性,车轮可能会暂时失去与轨道的接触。这种接触分离被公式化为线性互补问题(LCP)。使用这种公式,包括在分析中进行接触分离,就等于用对LCP求解器的调用来代替对线性方程式求解器的调用,该过程仅需修改两个步骤。本文的重点是VTSI分析的计算过程。本文的主要贡献是认识与时变运动学约束相关的计算问题,清楚地确定其原因并开发解决方法。 (C)2017 Elsevier Ltd.保留所有权利。

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