Simulation of Crack Propagation Mechanism in Porous Media using Modified linear Element Displacement Discontinuity Method
In this work, an effective methodology is introduced for simulation of the crack propagation in linear poroelastic media. The presence of pores and saturated cracks that can be accompanied by fluid flow makes the use of poroelastic media inevitable. In this work, involvement of the time parameter in crack propagation is of particular importance. The order of doing the work is such that first, derives the fundamental solutions of a poroelastic higher order displacement discontinuity method (PHODDM). Then will be provided a numerical formulation and implementation for PHODDM in a code named linear element poroelastic DDM (LEP-DDM). Analytical solutions use different times to check the correctness and validity of the proposed solution and the newly developed code. The numerical results show a good agreement and coordination with the analytical results in time zero and 5000 seconds . The code is able to pursue crack-propagation in time and space. This topic is introduced and shown in an example.
-
Real-Time Monitoring and Alarm System for Toxic Gas in Underground Coal Mines Using Smart Helmets
Daniyal Ghadyani, Amirhossein Badraddini, Mohammad Mirzehi Kalateh Kazemi, Vahab Sarfarazi, Hadi Haeri, Jinwei Fu, Sohrab Naser Mostofi, Vahid Khodabandeloo, *
Journal of Mining and Environement, Spring 2025 -
Considering Uncertainty for Estimating Shear Strength Parameters of Intact Rock Using Statistical Methods
Mehdi Mohammadi *, Mohammad Fatehi Maraji
Journal of Aalytical and Numerical Methods in Mining Engineering, -
Wellbore Stability Analysis Using Ground Reaction Curve and Mohr-Coulomb Failure Criterion
Amirmohammad Ahmari, *, Alireza Kargar
Journal of Aalytical and Numerical Methods in Mining Engineering, -
Coupling Discontinuous Deformation Analysis and Displacement Discontinuity Method for Simulating Failure Mechanism in Geomaterials
Mohsen Khanizadeh Bahabadi *, Alireza Yarahamdi Bafghi, , Hossein Shahami,
Journal of Mining and Environement, Summer 2024