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Digital energy grade-based approach for crack path prediction based on 2D X-ray CT images of geomaterials

机译:基于数字能量等级的土工材料二维X射线CT图像裂纹路径预测方法

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摘要

Cracking is an important phenomenon in the failure of geomaterials. The prediction of crack paths is difficult and challenging because of the randomness and uncertainty in the cracking behaviors of geomaterials. In this paper, to predict crack paths based on 2D X-ray computed tomography (CT) images, a digital energy grade-based approach is proposed, and the corresponding energy principle is established. Excellent consistency of crack paths is found between the predicted crack path and the real crack path of the specimen. The numerical results indicate that the proposed approach provides a useful way to predict cracking paths in geomaterials. Meanwhile, the stress and displacement fields before and after the specimen fails can be obtained by combining the proposed method with finite element (FE) analysis. In total, this proposed method can be applied not only to monitoring the health of but also to the stability analysis of engineering structures during engineering activities.
机译:开裂是土工材料破坏中的重要现象。由于土工材料开裂行为的随机性和不确定性,裂纹路径的预测既困难又具有挑战性。本文基于二维X射线计算机断层扫描(CT)图像预测裂纹路径,提出了一种基于数字能量等级的方法,并建立了相应的能量原理。在预测的裂纹路径和样本的真实裂纹路径之间发现裂纹路径的极佳一致性。数值结果表明,该方法为预测土工材料的开裂路径提供了一种有用的方法。同时,通过将所提出的方法与有限元(FE)分析相结合,可以获得试样破坏前后的应力场和位移场。总体而言,该方法不仅可以应用于工程活动期间的健康监测,还可以应用于工程结构的稳定性分析。

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