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Effect of Mesh Size in Dynamic FE Modeling of Resonant Column Tests

  • 2025
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the critical role of mesh size in dynamic finite element (FE) modeling of resonant column (RC) tests, a vital method for assessing the dynamic behavior of soils and rocks. The study highlights the importance of accurate mesh size selection to minimize errors in resonant frequency and damping ratio, which are key parameters in seismic and material testing. Through a comprehensive mesh convergence study, the authors demonstrate how different mesh sizes affect the dynamic response of soil specimens, with smaller mesh sizes leading to more accurate results but at a higher computational cost. The chapter also compares numerical results with experimental data, validating the FE model's accuracy and reliability. Additionally, it explores the impact of shear strain levels on the damping ratio and resonant frequency, providing insights into the material's behavior under different loading conditions. The findings underscore the necessity of a thorough mesh convergence analysis to ensure precise and efficient FE modeling in geotechnical engineering.

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Title
Effect of Mesh Size in Dynamic FE Modeling of Resonant Column Tests
Authors
Mohammad Zaid
Giovanni Cascante
Dipanjan Basu
Copyright Year
2025
DOI
https://doi.org/10.1007/978-3-031-95421-4_15
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