Numerical simulation of mechanical behavior of rock samples under uniaxial and triaxial compression testsy

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-09-30 DOI:10.33271/mining17.03.001
Wael R Abdellah, Salah A Bader, Jong-Gwan Kim, Mahrous A. M Ali
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Abstract

Purpose. The research aims to investigate how the load influences the ultimate compressive strength of rocks at failure. It uses both a uniaxial compression test, which involves incremental displacements, and a triaxial compression test, which applies varying confining stresses while maintaining a constant axial compression stress and incrementally increasing the displacement. Methods. To conduct the investigation, the researchers used RS2D, a rock-soil software, to examine the impact of different incremental displacements and confining stresses on the strength properties of various rock samples. The numerical analysis includes Fayum argillaceous sand, Sinai coal, Aswan granite, Assiut limestone, and Red-Sea phosphate. Findings. The research findings indicate that the ultimate compressive strength of rocks at failure is achieved with minor incremental displacements. Conversely, an increase in the confining stress leads to higher ultimate tensile strength, deviatoric stresses, and volumetric strain. However, the stress factor decreases in relation to the axial strain percentage. Originality. The simulator adopts Mohr-Coulomb failure criterion, presents and discusses the results in terms of stress-strain (σ-ε) curves, stress ratio (σ1/σ3), deviatoric stresses (σ1-σ3) and volumetric strain with respect to the percentage of axial strain. Practical implications. Using numerical modeling analysis, it becomes possible to reproduce the rock failure mechanisms observed in uniaxial and triaxial compression tests. This methodology has the potential to reduce the need for extensive experimental testing when assessing the tensile strength of rocks under different loads. As a result, both time and costs can be minimized.
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岩石试样单轴和三轴压缩力学行为的数值模拟
目的。研究荷载对岩石破坏时极限抗压强度的影响。它采用了单轴压缩试验(涉及增量位移)和三轴压缩试验(在保持恒定轴压应力和增量位移的同时施加不同的围应力)。方法。为了进行调查,研究人员使用RS2D(一种岩土软件)来检查不同增量位移和围应力对各种岩石样品强度特性的影响。数值分析包括法耶姆泥质砂、西奈煤、阿斯旺花岗岩、阿西尤特石灰岩和红海磷酸盐。发现。研究结果表明,岩石破坏时的极限抗压强度是在较小的增量位移条件下实现的。相反,围应力的增加会导致更高的极限抗拉强度、偏应力和体积应变。应力因子随轴向应变百分比的增大而减小。创意。采用Mohr-Coulomb破坏准则,给出并讨论了应力-应变(σ-ε)曲线、应力比(σ1/σ3)、偏应力(σ1-σ3)和体应变与轴向应变的比值关系。实际意义。通过数值模拟分析,可以重现在单轴和三轴压缩试验中观察到的岩石破坏机制。在评估不同载荷下岩石的抗拉强度时,这种方法有可能减少对大量实验测试的需求。因此,时间和成本都可以最小化。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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