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Three-Dimensional Reconstruction and Numerical Simulation Analysis of Acid-Corroded Sandstone Based on CT

机译:基于CT的酸腐蚀砂岩三维重建与数值模拟分析

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Due to its unique technological characteristics, coal mining and production often encounter an acid corrosion environment caused by acid gases. Acid erosion and a series of chemical reactions caused by it often led to the deterioration of coal, rock, support structure, etc. and induced serious safety accidents. To further explore the macro-mesoscopic damage evolution law and failure mechanisms of rock masses under corrosion conditions through numerical simulation, a zonal refined numerical model that can reflect the acid corrosion characteristics of sandstone is established based on CT and digital image processing (DIP). The uniaxial compression test of corroded sandstone is simulated by ABAQUS software. Comparing the numerical simulation results with the physical experiment results, we found that the three-dimensional finite element model based on CT scanning technology can genuinely reflect sandstone’s corrosion characteristic. The numerical simulation results of the stress-strain curve and macroscopic failure mode of the acid-corroded sandstone are in good agreement with the experimental results, which provides a useful method for further studying the damage evolution mechanism of the acid-corroded rock mass. Furthermore, the deformation and damage evolution law of the corroded sandstone under uniaxial compression is qualitatively analyzed based on the numerical simulation. The results show that the rock sample’s axial displacement decreases gradually from top to bottom under the axial load, and the vertical variation is relatively uniform. In contrast, the rock sample’s removal gradually increases with the increase of axial pressure, and the growth presents a certain degree of nonuniformity in the vertical. The acid-etched rock sample’s damage starts from both the end and the middle; it first appears in the corroded area. Moreover, with the displacement load increase, it gradually develops and is merged in the middle of the rock sample and forms macroscopic damage.
机译:由于其独特的技术特征,煤矿和生产经常遇到酸性气体引起的酸性腐蚀环境。酸糜烂和由其引起的一系列化学反应通常导致煤炭,岩石,支撑结构等的恶化,并引起严重的安全事故。通过数值模拟进一步探索腐蚀条件下岩体损伤的宏观损伤演化法和岩体失效机制,基于CT和数字图像处理建立了可以反映砂岩酸腐蚀特性的区划精制数值模型。 ABAQUS软件模拟腐蚀砂岩的单轴压缩试验。将数值模拟结果与物理实验结果进行比较,我们发现基于CT扫描技术的三维有限元模型可以真正反映砂岩的腐蚀特性。酸腐蚀砂岩的应力 - 应变曲线和宏观衰竭模式的数值模拟结果与实验结果吻合良好,这提供了进一步研究酸腐蚀岩体的损伤进化机制的有用方法。此外,基于数值模拟来定性分析单轴压缩下腐蚀砂岩的变形和损伤演化法。结果表明,岩石样品的轴向位移在轴向载荷下从顶部到底部逐渐减小,并且垂直变化相对均匀。相反,岩石样品的去除随着轴向压力的增加而逐渐增加,并且增长在垂直方面存在一定程度的不均匀性。酸蚀刻的岩石样品的损坏从末端和中间开始;它首先出现在腐蚀区域。此外,随着位移负荷增加,它逐渐发展并合并在岩石样本的中间,形成宏观损伤。

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