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PROBABILISTIC STRUCTURAL ANALYSIS OF RAILROAD SUBGRADE USING FINITE ELEMENT ANALYSIS

机译:基于有限元分析的铁路路基概率结构分析

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The reliability of finite element (FE) based deterministic structural analysis of railroad trackbed has improved significantly due to ever increasing computational powers. However, the application of probabilistic methods to incorporate the material and geometric variabilities in these FE analyses is still profoundly underworked. In this study, the influence of variability in granular layers' modulus and thicknesses values on the railroad subgrade performance have been investigated by applying probabilistic method and using a 3-dimensional FE based numerical trackbed model previously developed and validated by the authors' research group. The influence of these factors is accounted for by changing their coefficients of variance (COV) while keeping their means constant. Preliminary results revealed that the variation in subgrade modulus is the most influential factor for subgrade performance, both in terms of progressive shear failure and excessive plastic deformations, followed by ballast modulus. Variations in depths, for the range studied, remained passive to the subgrade performance. The findings of this work is of particular significance in evaluating the subgrade performance while including the material and geometric variations, which may be caused by construction imperfections, weather changes, and/or rail operations.
机译:由于计算能力的不断提高,基于有限元(FE)确定性结构的铁路轨道床的可靠性已得到显着提高。然而,在这些有限元分析中将材料和几何变异纳入概率方法的应用仍然远远不够。在这项研究中,通过应用概率方法并使用作者研究小组先前开发和验证的基于3维有限元的数字轨迹床模型,研究了颗粒层模量和厚度值变化对铁路路基性能的影响。这些因素的影响是通过在保持均值不变的情况下更改其方差系数(COV)来解决的。初步结果表明,就渐进剪切破坏和过度塑性变形而言,路基模量的变化是影响路基性能的最主要因素,其次是压载模量。对于所研究的范围,深度的变化对于路基性能仍然是被动的。这项工作的发现对于评估路基性能,同时包括可能由施工缺陷,天气变化和/或铁路运营引起的材料和几何变化,具有特别重要的意义。

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