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Quantification of geogrid lateral restraint using transparent sand and deep learning-based image segmentation

机译:基于透明砂和深度学习的图像分割土工格栅侧向约束量化

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? 2023 Elsevier LtdAn experimental technique is presented to quantify the lateral restraint provided by a geogrid embedded in granular soil at the particle level. Repeated load triaxial tests were done on transparent sand specimens stiffened with geosynthetic inclusions simulating geogrids. Images of laser illuminated planes through the specimens were segmented into particles using a deep learning-based segmentation algorithm. The particle outlines were characterized in terms of Fourier shape descriptors and tracked across sequentially captured images. The accuracy of the particle displacement measurements was validated against Digital Image Correlation (DIC) measurements. In addition, the method's resolution and repeatability is presented. Based on the measured particle displacements and rotations, a state boundary line between probable and improbable particle motions was identified for each test. The size of the zone of probable motions was used to quantify the lateral restraint provided by the inclusions. Overall, the tests results revealed that the geosynthetic inclusions restricted both particle displacements and rotations. However, the particle displacements were found to be restrained more significantly than the rotations. Finally, a unique relationship was found between the magnitude of the permanent strains of the specimens and the area of the zone of probable motions.
机译:?2023 Elsevier Ltd提出了一种实验技术,用于量化嵌入颗粒土壤中的土工格栅在颗粒水平上提供的横向约束。对用土工合成材料夹杂物加固的透明砂试样进行了重复的荷载三轴试验,模拟土工格栅。使用基于深度学习的分割算法将穿过标本的激光照明平面的图像分割成颗粒。根据傅里叶形状描述符对粒子轮廓进行表征,并在连续捕获的图像中进行跟踪。通过数字图像相关(DIC)测量验证了颗粒位移测量的准确性。此外,还介绍了该方法的分辨率和重复性。根据测得的粒子位移和旋转,为每个测试确定了可能和不可能粒子运动之间的状态边界线。可能运动区域的大小用于量化夹杂物提供的横向约束。总体而言,测试结果表明,土工合成材料包裹体限制了颗粒位移和旋转。然而,发现粒子位移比旋转受到的约束更明显。最后,发现试样的永久应变的大小与可能运动区域的面积之间存在独特的关系。

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