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Development of a simple 2D model for railway track-bed mechanical behaviour based on field data

机译:基于现场数据的铁路道床力学行为简单二维模型开发

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From a practical point of view, it is important to empirically predict the mechanical behaviour of railway track bed of multi-layers using simple models. In this study, Field monitoring was performed using several accelerometers installed in different layers along a conventional railway track. The accelerometer signals were recorded during the passages of train at 6 different speed.s,from 60 to 200 km/h. The particle displacements were estimated by integrating the acceleration data. Emphasis was put on the dynamic amplification with speed, the attenuation of vibration over depth and the wave propagation along longitudinal direction in a given layer. The obtained results showed that the measured dynamic amplification with train speed depends on the relationship between the train speed and the surface wave velocity. The amplitude attenuation over depth can be represented by an exponential expression. In addition, it was found that the propagation of vibrations along the longitudinal direction had a sinusoidal shape, exponentially attenuated in distance, similar to the displacements calculated by the Winkler beam model. Based on these three mechanisms identified as well as the field data, a 2D analytical model was developed, allowing the prediction of conventional railway track-bed deflections with the axle loads and train speeds. Comparisons between prediction and measurement showed the relevance of the proposed model.
机译:从实用的角度来看,重要的是使用简单的模型凭经验来预测多层铁路轨道床的力学行为。在这项研究中,现场监控是使用沿着传统铁路轨道安装在不同层中的多个加速度计进行的。在火车通过时以60至200 km / h的6种不同速度s记录了加速度计信号。通过积分加速度数据来估计颗粒位移。重点是动态加速,给定层中的振动在深度上的衰减以及波沿纵向的传播。所得结果表明,测得的列车速度动态放大率取决于列车速度与表面波速度之间的关系。深度上的幅度衰减可以用指数表达式表示。另外,发现振动沿纵向的传播呈正弦形状,其距离呈指数衰减,类似于Winkler束模型计算的位移。基于确定的这三种机制以及现场数据,开发了一个二维分析模型,该模型可以预测具有轴负载和火车速度的常规铁路道床挠度。预测和测量之间的比较表明了该模型的相关性。

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