Explicit meshfree u−pw solution of the dynamic Biot formulation at large strain
Authors/Creators
- 1. Department of Continuum Mechanics and Theory of Structures, Technical University of Madrid, Madrid, Spain
- 2. Department of Mathematics Applied to Civil Engineering, Technical University of Madrid, Madrid, Spain
Description
In this paper, an efficient and robust methodology to simulate saturated soils subjected to low-medium frequency dynamic loadings under large deformation regime is presented. The coupling between solid and fluid phases is solved through the dynamic reduced formulation 𝑢−𝑝w (solid displacement – pore water pressure) of the Biot’s equations. The additional novelty lies in the employment of an explicit two-steps Newmark predictor-corrector time integration scheme that enables accurate solutions of related geomechanical problems at large strain without the usually high computational cost associated with the implicit counterparts. Shape functions based on the elegant Local Maximum Entropy approach, through the Optimal Transportation Meshfree framework, are considered to solve numerically different dynamic problems in fluid saturated porous media.
Files
Navas_2022_exp_up.pdf
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(3.1 MB)
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