NUMERICAL SIMULATION OF DESICCATION CRACKING PROCESS BY WEAK COUPLING OF DESICCATION AND FRACTURE

Authors

  • Sayako Hirobe
  • Kenji Oguni

Keywords:

Desiccation Cracks, Pattern Formation, Coupled Problem, PDS-FEM

Abstract

The prediction of the possibilities for the desiccation cracking is important for the building
construction because they could cause damages to the foundation structures. While the experimental and
numerical researches were performed with various materials and conditions, the mechanism of the
desiccation cracking is still not clear. In this research, the desiccation cracking is modeled by the coupling of
the desiccation governed by the diffusion equation, the deformation, and the fracture. We perform the weak
coupling analysis of the finite element analysis for the desiccation and the analysis of Particle Discretization
Scheme Finite Element Method (PDS-FEM) for the deformation and the fracture. The simulation is carried
out with the different thickness of the desiccation layer under various boundary conditions. The simulation
results show the satisfactory agreement with the experimental observation in terms of the crack pattern with
net-like structure, pattern formation process, and the change in size of the cells framed by the cracks
depending on the thickness of the desiccation layer. This agreement between the simulation results and the
experimental observations indicates that the coupling of desiccation, deformation, and fracture is a
fundamental mechanism of the desiccation cracking.

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Published

2016-11-30

How to Cite

Sayako Hirobe, & Kenji Oguni. (2016). NUMERICAL SIMULATION OF DESICCATION CRACKING PROCESS BY WEAK COUPLING OF DESICCATION AND FRACTURE. GEOMATE Journal, 12(33), 8–13. Retrieved from https://geomatejournal.com/geomate/article/view/1177

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