An algorithm for cohesive crack propagation in variably saturated porous media via a time sub-stepping scheme

  • Varnosfaderani, Alireza Mokhtari
  • Haghighi, Ehsan Motevali
  • Gatmiri, Behrouz
  • Na, SeonHong
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초록

This study presents a novel approach for simulating hydraulic fracture propagation in variably saturated porous media using the time sub-stepping method. Based on the authors' previous THM model, a variably saturated model is developed based on mixture theory using two independent variables of displacement and water pressure to describe the behavior of intact porous media. The proposed model adopts the crack as an interface element coupled to the general equilibrium and mass conservation equations. XFEM and beta method are used to discretize the governing equations spatially and temporally, respectively. The time sub-stepping approach is used to unconstrain the crack tip advancement velocity to obtain a consistent solution. Three examples are solved to validate the model and show its robustness. The first two numerical examples are selected to demonstrate the capability of the proposed model to simulate consolidation and gravitational drainage in the variably saturated porous media. The third example studies crack propagation in an unsaturated porous plate. The time sub-stepping method finds when the crack propagates to an element ahead of the crack tip and smoothes the stepwise behavior for the quasi-static propagation of a single hydrofracture with longitudinal laminar flow.

키워드

Cohesive crackConsolidationDrainageExtended finite element method (XFEM)Hydraulic fractureStepwise crack advancementTime sub-stepping methodVariably saturated porous mediaMIXTURE THEORY APPROACHCEMENT-BASED MATERIALSFLUID-FLOWFRACTURE PROPAGATIONMECHANICAL BEHAVIORPART IMODELDAMAGEPERMEABILITYXFEM
제목
An algorithm for cohesive crack propagation in variably saturated porous media via a time sub-stepping scheme
저자
Varnosfaderani, Alireza MokhtariHaghighi, Ehsan MotevaliGatmiri, BehrouzNa, SeonHong
DOI
10.1007/s11440-023-02101-1
발행일
2024-06
유형
Article
저널명
Acta Geotechnica
19
6
페이지
3671 ~ 3690