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Numerical Analysis of Ballastless Asphalt Tracks Subjected to Dynamic Loads

  • 2021
  • OriginalPaper
  • Chapter
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Abstract

The chapter presents a detailed numerical analysis of ballastless asphalt tracks subjected to dynamic loads using a 3-D finite element model. The study investigates the mechanical behavior of the track under various conditions, including temperature variations and initial compaction stresses. The model simulates a full-scale, limited-size test section of an asphalt track, providing insights into the stress and strain distributions within the track substructure. The sensitivity analyses reveal that the horizontal tensile strains at the bottom of the asphalt layer are highly sensitive to temperature and moderately sensitive to the initial modulus of the unbound granular layer. Additionally, vertical stresses and surface accelerations show significant sensitivity to both temperature and initial compaction stresses. The findings of this study contribute to a better understanding of the performance of ballastless asphalt tracks under dynamic loads, paving the way for further validation and application in real-world scenarios.

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Title
Numerical Analysis of Ballastless Asphalt Tracks Subjected to Dynamic Loads
Authors
T. Bose
V. Zania
E. Levenberg
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-64518-2_30
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