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Experimental Study on the Response of Cracked Sandstone to the Intermediate Principal Stress Coupled with Pore Pressure

机译:裂缝砂岩对中间主应力耦合孔隙压力响应的试验研究

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摘要

Underground fractured rock masses are susceptible to failure under the combined influence of true triaxial stresses and pore pressure, posing severe threats to personnel and production safety of underground engineering. To investigate the influence of intermediate principal stress (σ2) on the mechanical and water diffusion volume change (ΔV) characteristics during the failure process of cracked rocks under stable pore pressure, this study conducted true triaxial strength experiments on cracked sandstone with stable pore pressure. The results demonstrated that with the increase of σ2, crack initiation stress (σci), crack damage stress (σcd) and the peak stress (σ1,peak) of cracked sandstone initially increase and then decrease. Conversely, ΔV tends to decrease first and then increase with the increase of σ2. This inverse relationship indicates that under elevated σ2, the decreased strength of cracked rock could lead to an increase in ΔV, which may increase the probability of water inrush disasters. The findings of this study provide a theoretical reference for the stability of rock mass engineering and the prevention of water inrush disasters.
机译:地下裂隙岩体在真三轴应力和孔隙压力的共同影响下易发生破坏,对地下工程的人员和生产安全构成严重威胁。为研究稳定孔隙压力下裂缝岩破坏过程中中间主应力 (σ2) 对力学和水扩散体积变化 (ΔV) 特性的影响,本研究在稳定孔隙压力下的裂缝砂岩上进行了真正的三轴强度试验。结果表明,随着σ2的增加,裂缝砂岩的裂纹起生应力(σci)、裂纹损伤应力(σcd)和峰值应力(σ1,峰值)先增大后减小。相反,ΔV 随着 σ2 的增加而趋于先减小后增加。这种反比关系表明,在 σ2 升高的情况下,裂缝岩石强度的降低会导致 ΔV 的增加,从而可能增加突水灾害的可能性。研究结果为岩体工程的稳定性和突水灾害的预防提供了理论参考。

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