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Stress–Seepage Coupling of Cataclastic Rock Masses Based on Digital Image Technologies

机译:基于数字图像技术的Cataclastic岩体的应力渗流耦合

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摘要

To explore the mechanical properties of cataclastic rock masses and the laws of their permeability changes under hydraulic pressure, cataclastic rock masses in shattered fault zones are sorted according to their particle size. Rubble is sorted under the same conditions to acquire digital images in sections and extract spatial distribution information. Due to significant numerical differences between rocks and pores in pixel functions and image matrices, MATLAB functions are developed for threshold segmentation. Using linear interpolation, three-dimensional digital analysis models are built. Based on these models, interconnected networks of spatial structures and spatial distribution features of stress, seepage and speed are identified for cataclastic rock masses. The seepage flow of cataclastic rock masses is approximated based on the maximum and minimum particle sizes. Additionally, an experimental study is performed with a seepage tester on cataclastic rock masses. According to the results, the impacts of the particle size on seepage differ significantly under different stress conditions. The seepage flow curve determined from the experiment is within the hydraulic pressure flow scope determined based on the maximum and minimum particle sizes. The seepage is in line with Forchheimer’s equations, but sharply contrasts with the theoretical results of Darcy’s law. This simulation method can be used as a reference for studying seepage–stress coupling of cataclastic rock masses.
机译:为了探索水力岩体的机械性能和液压下渗透性变化的规律,根据粒度对破碎的断层区域进行破碎岩体。瓦砾是在相同的条件下进行排序,以便在部分中获取数字图像并提取空间分布信息。由于像素函数和图像矩阵中的岩石和孔之间的显着数值差异,因此开发了MATLAB功能以用于阈值分割。使用线性插值,构建了三维数字分析模型。基于这些模型,互联的空间结构和应力,渗流和速度的空间分布特征被识别出用于水性岩石质量。基于最大和最小粒径近似的水性岩石质量的渗流流。另外,在Cataclastic岩体上用渗流测试仪进行实验研究。根据结果​​,在不同的应力条件下,粒度对渗流的影响显着不同。从实验确定的渗流流曲线在基于最大和最小粒径确定的液压流范围内。渗漏与Forchheimer的方程符合,但与达西法的理论结果略有鲜明对比。该模拟方法可用作研究水力岩体的渗流耦合的参考。

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