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Computed tomography based numerical simulation for triaxial test of soil-rock mixture

机译:基于计算机层析成像的土石混合物三轴试验数值模拟

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摘要

The fabric of gravels can significantly affect the characteristics of deformation, stress field and failure of soil-rock mixture. The computed tomography (CT) was used to obtain the shape and location of gravels in triaxial soil-rock mixture samples. Based on the CT images, the typical longitudinal profiles of triaxial sample were reconstructed and the wire-frame models indicating the interfaces between the soil matrix and gravels were built through digital image processing (DIP), including image binarization, noise removal and interface detection. A mesh generator, DISTMESH was utilized to improve meshing quality, especially near the interfaces. The mesh was exported to FLAC(3D) using an interface program and 2D plane strain models with different gravel content were simulated for verification. It was found that cracks usually first appear on certain parts of the soil/gravel interfaces where the shear stress is prone to accumulate. The location of cracks have a good consistency with the results obtained by CT images. It can be concluded that the method proposed is efficient and accurate for the behavior analysis of soil-rock mixture by using numerical simulation and triaxial test with CT scan. (C) 2015 Elsevier Ltd. All rights reserved.
机译:砾石的结构会显着影响土石混合体的变形,应力场和破坏特性。使用计算机断层扫描(CT)来获取三轴土壤-岩石混合物样品中砾石的形状和位置。基于CT图像,重建三轴样品的典型纵向轮廓,并通过数字图像处理(DIP)来建立表示土壤基质与砾石之间界面的线框模型,包括图像二值化,噪声去除和界面检测。网格生成器DI​​STMESH用于改善网格划分质量,尤其是在界面附近。使用界面程序将网格导出到FLAC(3D),并模拟具有不同砾石含量的2D平面应变模型进行验证。已经发现,裂纹通常首先出现在土/砾石界面的某些部位,在该部位容易产生切应力。裂纹的位置与通过CT图像获得的结果具有良好的一致性。可以得出结论,该方法通过数值模拟和CT扫描三轴试验可以有效,准确地进行土石混合体的行为分析。 (C)2015 Elsevier Ltd.保留所有权利。

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