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Dynamic analysis of an elastic plate on a fissured poroelastic half-plane under a moving load

  • 17-08-2025
  • Research
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Abstract

This study delves into the dynamic response of an elastic plate resting on a fissured poroelastic rock medium under a moving load, employing the complex Fourier series method for analytical solutions. The research focuses on the influence of porosities, permeabilities, load velocity, and plate thickness on various response quantities, including plate deflection, shear force, bending moment, effective stress, and porewater pressures. The study verifies the derived analytical solution by comparing it with existing solutions for isotropic elastic half-planes, ensuring the accuracy and reliability of the results. Parametric studies reveal that the maximum variations of response quantities due to changes in porosities and permeabilities are minimal for rigid pavement response and effective stress but significantly pronounced in porewater pressures, particularly within fissures. The study concludes that response quantities at higher velocities are generally more susceptible to porosity variations, while those at lower velocities are more prone to permeability impacts, except for a few exceptions. Additionally, response quantities at smaller thicknesses are generally more easily influenced by variations in porosity and permeability, apart from a small number of cases.

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Title
Dynamic analysis of an elastic plate on a fissured poroelastic half-plane under a moving load
Authors
Zhenyu Liu
Niki D. Beskou
Edmond V. Muho
Ying Zhou
Publication date
17-08-2025
Publisher
Springer Netherlands
Published in
Meccanica / Issue 9/2025
Print ISSN: 0025-6455
Electronic ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-025-02037-8
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    in-adhesives, MKVS, Ecoclean/© Ecoclean, Hellmich GmbH/© Hellmich GmbH, Krahn Ceramics/© Krahn Ceramics, Kisling AG/© Kisling AG, ECHTERHAGE HOLDING GMBH&CO.KG - VSE, Schenker Hydraulik AG/© Schenker Hydraulik AG