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Application of DICM on Similar Material Simulation Experiment for Rock-Like Materials

机译:DICM在岩状材料上类似材料仿真实验的应用

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摘要

The digital image correlation method (DICM) has been applied to similar material simulation experiments for rock-like materials, to overcome the weakness of traditional measurements, for example, data discontinuous. In this paper, the movement and fracturing process of the overlying strata during excavation are observed and studied, and the distributions of stress, strain, and deformation in the overlying strata are obtained based on similar material simulation. The DICM is applied to improve the testing method and to optimize the discontinuity of testing points; of course, the difference of rock deformation in the overlying strata during excavation is considered. Full-field deformation and strain are analyzed by the DICM. To verify the accuracy of the DICM, results obtained from the DICM, numerical simulation and similar material simulation, are compared. The DICM can reflect the characteristics of locality and randomness of rock-like materials more real than numerical simulation, and comparing with similar material simulation, it can directly reproduce the movement and fracturing process of the overlying strata during full-field excavation. It shows that, the DICM is entirely feasible to using in the large scale full-field deformation measurement on complex rock structure, and it is of theoretical importance for testing for rock-like materials.
机译:数字图像相关方法(DICM)已应用于类似的岩石状材料的类似材料模拟实验,以克服传统测量的弱点,例如,数据不连续。在本文中,观察和研究了覆盖层期间的覆盖层的运动和压裂过程,基于类似的材料模拟获得覆盖层中的应力,应变和变形的分布。 DICM应用于改善测试方法,并优化测试点的不连续性;当然,考虑了在挖掘过程中覆盖层中岩石变形的差异。通过DICM分析全场变形和菌株。为了验证DICM的准确性,比较了从DICM,数值模拟和类似材料模拟中获得的结果。 DICM可以反映比数值模拟更真实的岩石状材料的局部特征和随机性,并与类似的材料仿真进行比较,它可以在全场开挖期间直接再现覆盖层的运动和压裂过程。结果表明,DICM在复杂岩石结构上的大规模全场变形测量中完全是可行的,并且对岩石状材料进行测试是理论重要性的理论重要性。

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