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基于数字图像的花岗岩双轴压缩数值试验研究
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Numerical Experimental study on Biaxial Compression of Granite Based on Digital Image
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    摘要:

    以花岗岩室内试验为基础,研究花岗岩基于数字图像的二维颗粒离散元模拟方法.根据拍摄的花岗岩照片,运用数字图像技术重构花岗岩真实的细观结构模型.基于重构的细观结构模型建立相应的数值模型,采用颗粒流程序(PFC),通过单轴压缩试验,标定PFC模型参数,利用二维数值双轴试验方法研究花岗岩的力学特性,并从细观上探讨花岗岩的变形破坏机制.研究试件在数值试验中的受力全过程和细观破坏形态,得到试验数据,绘制应力-应变曲线和裂缝数-荷载步曲线,与室内试验结果进行了对比分析.研究结果表明:基于数字图像的花岗岩双轴压缩试验模拟获得的花岗岩强度特性、微观裂缝的发展过程和试件破坏特点与室内试验结果吻合;基于数字图像的二维颗粒离散元法可以描述花岗岩这类具有明显非连续性特征材料在单轴、双轴受压状态下的细观破坏特征,可为进一步研究非均质材料在复杂受力条件下的破坏机理奠定基础.

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    Based on the laboratory tests on granite, a two-dimensional discrete element simulation method(DEM) of granite based on digital image was studied. Based on the pictures of granite photos,the micro-structure model of granite was reconstructed by digital image technique and the DEM numerical model was established through the reconstructed model. A uniaxial compression test was conducted by the particle flow program (PFC) to calibrate the parameters used in the model. With the use of these obtained parameters, the mechanical properties of granite were studied by two-dimensional numerical biaxial tests,and the deformation and failure mechanism were discussed from a microscopic perspective.The whole process of loading and the morphology of micro-damage were studied in the numerical experiment,and the results were compared with the indoor test results. The results show that the strength characteristics of granite obtained from digital image granite biaxial compression test, the development process of micro-cracks and the specimen failure characteristics are in good agreement with those from laboratory tests. The two-dimensional particle-based discrete element method based on digital image can describe the characteristics of micro-damage of granite with obvious discontinuities in uniaxial and biaxial compression state,and provides an effective method for the further investigation on complex stress conditions under the destruction mechanism.

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张扬,刘立鹏?覮,张彬,孙兴松.基于数字图像的花岗岩双轴压缩数值试验研究[J].湖南大学学报:自然科学版,2018,45(S0):52~57

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  • 在线发布日期: 2018-12-11
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