有轨电车相互作用的建模

S. Lakušić, D. Lazarevic
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引用次数: 3

摘要

本文研究了有轨电车在轨道上运行的数值模型。钢轨被建模为具有集中质量的弹性支承连续梁。将车辆近似为由三个用线弹性弹簧连接的刚体组成的离散系统。系统的耗散机制用线性阻尼器来建模。使用的两个基本假设是:a)欧拉-伯努利梁理论和b)车轮与轨道的分离是不允许的。采用基于直接积分法的隐式分步法求解运动微分方程组。该算法是在一阶预测-(再)校正方法的基础上构思的。采用力法对接触条件进行建模。将计算结果与有轨电车轨道实测结果进行了比较。位移和加速度的数值预测与实验结果很好地吻合
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of Tram-Track Interaction
The paper deals with numerical model of a tram moving on the track. The rail is modelled as elastically supported continuous beam with lumped masses. A vehicle is approximated as a discrete system consisting of three rigid masses connected with linear elastic springs. Dissipation mechanisms in the system are modelled with the linear dashpots. Two basic assumptions that are used are: a) the Euler-Bernoulli beam theory and b) the separation of the wheel from the rail is not permitted. The system of differential equations of motion is solved by an implicit version of step by step method based on the direct integration technique. The algorithm is conceived on the first order predictor - (re)corrector method. The contact condition is modelled by the force method. Results of the calculations are compared with the results of measurement on the tram track. Numerical predictions for displacements and accelerations are in good agreement with the experimental findings
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