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The experimental validation of a numerical model for the prediction of railway induced vibrations

机译:预测铁路诱发振动的数值模型的实验验证

摘要

This paper presents the experimental validation of a numerical model for the prediction of train induced vibrations. The model fully accounts for the dynamic interaction between the train, the track and the soil. The track geometry is assumed to be invariant with respect to the longitudinal direction, which allows for an efficient solution of the dynamic track-soil interaction problem in the frequency-wavenumber domain. The model is validated by means of several experiments that have been performed at the occasion of the homologation tests of the new HST track on the line L2 between Brussels and Koln. A first set of experiments is used to determine the dynamic soil and track characteristics. In a second set of experiments, the soil transfer functions, the track-soil transfer functions and the track and free field vibrations during the passage of a Thalys high speed train have been measured. These results are used for a step-wise validation of the numerical model that is based on the identified model parameters and allows to study the propagation of errors in the prediction model. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文介绍了预测列车诱发振动的数值模型的实验验证。该模型充分考虑了火车,轨道和土壤之间的动态相互作用。假定轨道几何形状相对于纵向是不变的,这允许在频率-波数域中有效地解决动态轨道-土壤相互作用问题。该模型已通过在布鲁塞尔和科隆之间的L2线上的新HST轨道进行的同源性测试之时进行的几次实验进行了验证。第一组实验用于确定动态土壤和轨道特征。在第二组实验中,测量了Thalys高速列车通过期间的土壤传递函数,轨道-土壤传递函数以及轨道和自由场振动。这些结果用于基于确定的模型参数的数值模型的逐步验证,并允许研究预测模型中误差的传播。 (c)2006 Elsevier Ltd.保留所有权利。

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