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Three-dimensional hydro-mechanical model of borehole in fractured rock mass using discrete element method

机译:不同元件法的裂缝岩体钻孔三维水电机械模型

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摘要

Borehole stability, in heavily fractured rock mass has been a significant issue in deep earth resources exploration and extraction. In this study, a three-dimensional model using 3DEC is developed to simulate a borehole drilled in fractured rock mass. A model with overbalanced drilling conditions is simulated in this study. In doing so, different depths of a borehole, MB-1 borehole, in Northern Perth basin was simulated. The developed model was validated against log measurements of Caliper log and strength of rock is found as a governing factor in controlling the stability. Then, hydro mechanical modelling was carried out and it was observed that high mud flow rates and high pore pressure increased the instability around borehole. Furthermore, a parametric study was performed to investigate the influence of viscosity and fluid flow on the stability. Shear displacement linearly increase with an increase in flow rate while fluid pressure decreases due to increase in fractures aperture with an increase in flow rate. Similarly, increase in viscosity caused increase in fracture shearing and therefore instability around borehole.
机译:钻孔稳定性,严重裂缝的岩石质量是深度地球资源勘探和提取中的一个重要问题。在该研究中,开发了使用3DEC的三维模型来模拟在裂缝岩体中钻的钻孔。在本研究中模拟了具有过平衡钻井条件的模型。在这样做的情况下,模拟了北部珀斯盆地的钻孔MB-1钻孔的不同深度。验证开发的模型针对数量的卡钳数量测量,并发现岩石的强度作为控制稳定性的控制因素。然后,进行了水力机械建模,观察到高泥浆流量和高孔隙压力增加了钻孔周围的不稳定性。此外,进行参数研究以研究粘度和流体流动对稳定性的影响。剪切位移随着流速的增加而线性增加,而流体压力由于裂缝孔径的增加而减小,则流速增加。类似地,粘度的增加导致骨折剪切增加,因此在钻孔周围的不稳定性。

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