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The influence of soil nonlinear properties on the track/ground vibration induced by trains running on soft ground

机译:土体非线性特性对列车在软土地基上的轨道/地面振动的影响

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摘要

The deflections of the track under a moving train depend on the stiffness of the underlying soil as well as the properties of the track and the train. In many situations, small-strain linear properties can be assumed for the soil. However, particularly for soft soil, as the load speed approaches the speed of Rayleigh waves in the ground, the deflections increase considerably. In such situations the use of the small-strain soil stiffness may lead to inaccuracies in the estimates of track deflections or of the critical speed. A finite element model of the track and ground has been developed to study the deflections induced by trains running on soft ground. Soil nonlinearity is introduced through a user-defined subroutine. The nonlinearity is specified in terms of the shear modulus reduction as a function of octahedral shear strain, which can be based on data obtained from laboratory tests on soil samples. The model is applied to the soft soil site at Ledsgård in Sweden, from which extensive measurements are available from the late 1990s. It is shown that the use of a linear model based on the small-strain soil parameters leads to an underestimation of the track displacements when the train speed approaches the critical speed, whereas the nonlinear model gives improved agreement with measurements. In addition, an equivalent linear model is considered, in which the equivalent soil modulus is derived from the laboratory curve of shear modulus reduction using an ‘effective’ shear strain. For this approach it is shown that the predictions in this specific case are improved by using a value of 20% of the maximum strain as the effective strain rather than the value of 65% commonly used in earthquake studies.
机译:行驶中的火车下轨道的挠度取决于下层土壤的刚度以及轨道和火车的特性。在许多情况下,可以假定土壤具有小应变线性特性。但是,特别是对于软土,当载荷速度接近地面中的瑞利波速度时,挠度会大大增加。在这种情况下,小应变土壤刚度的使用可能导致轨道变形或临界速度的估计不准确。已经开发了轨道和地面的有限元模型,以研究在软地面上行驶的火车引起的变形。土壤非线性是通过用户定义的子例程引入的。非线性是根据剪切模量减少与八面体剪切应变的函数来指定的,该函数可以基于对土壤样品的实验室测试获得的数据。该模型已应用于瑞典Ledsgård的软土场地,从1990年代后期开始可以进行大量测量。结果表明,当列车速度接近临界速度时,基于小应变土壤参数的线性模型的使用会导致轨道位移的低估,而非线性模型则使测量结果更加一致。此外,考虑了等效线性模型,其中等效土壤模量是使用“有效”剪切应变从剪切模量降低的实验室曲线得出的。对于这种方法,表明通过使用最大应变的20%的值作为有效应变,而不是地震研究中通常使用的65%的值,可以改善此特定情况下的预测。

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