Crack analysis using a dislocation-based displacement discontinuity method: Derivation of higher-order elements, numerical implementation, and accuracy analysis

Author:

Abdollahipour Abolfazl

Publisher

Elsevier BV

Reference64 articles.

1. Crack propagation mechanism in hydraulic fracturing procedure in oil reservoirs;Abdollahipour,2015

2. Abdollahipour A, Fatehi-Marji M. A thermo-hydromechanical displacement discontinuity method to model fractures in high-pressure, high-temperature environments. Renewable Energye 2020;153:1488–503.

3. Abdollahipour, A., Fatehi Marji, M., Yarahmadi-Bafghi, A.R., 2013. A fracture mechanics concept of in-situ stress measurement by hydraulic fracturing test. In: The 6th International Symposium on In-situ Rock Stress, Japan: ISRM.

4. Abdollahipour A, Fatehi Marji M, Yarahmadi Bafghi A, Gholamnejad J. Simulating the propagation of hydraulic fractures from a circular wellbore using the Displacement Discontinuity Method. International Journal of Rock Mechanics and Mining Sciences 2015;80. Doi: 10.1016/j.ijrmms.2015.10.004.

5. Abdollahipour A, Fatehi-Marji M, Yarahmadi-Bafghi A, Gholamnejad J. A Fourth Order Formulation of DDM for Crack Analysis in Brittle Solids. Analytical and Numerical Methods in Mining Engineering 2016;3.

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