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非连续变形分析(DDA)中断续节理扩展的模拟方法研究和试验验证

夏才初,许崇帮-2010-10-15
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TL;DRAbstract

Virtual joint is adopted in the discontinuous deformation analysis (DDA), which can provide path for block failure and fracture development. Therefore, the failure process of jointed rock mass is a progress of initiation, extending and connecting of joints inside rock mass; and attenuation of virtual joint mechanical parameters represents the strength attenuation in the process of rock failure. The attenuation law of virtual joint mechanical parameters is studied by introducing the definition of virtual joint connectivity rate; and the attenuation formula of virtual joint mechanical parameters is established. According to the phenomenon of mechanical parameters attenuation in rock failure, the strength criterion (Jennings criterion and the maximum tensile strength criterion) for intermittent jointed rock masses are studied. Programming the attenuation law of virtual joint mechanical parameters and improved strength formula of intermittent joint into DDA to simulate the fracturing proce

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Virtual joint is adopted in the discontinuous deformation analysis (DDA), which can provide path for block failure and fracture development. Therefore, the failure process of jointed rock mass is a progress of initiation, extending and connecting of joints inside rock mass; and attenuation of virtual joint mechanical parameters represents the strength attenuation in the process of rock failure. The attenuation law of virtual joint mechanical parameters is studied by introducing the definition of virtual joint connectivity rate; and the attenuation formula of virtual joint mechanical parameters is established. According to the phenomenon of mechanical parameters attenuation in rock failure, the strength criterion (Jennings criterion and the maximum tensile strength criterion) for intermittent jointed rock masses are studied. Programming the attenuation law of virtual joint mechanical parameters and improved strength formula of intermittent joint into DDA to simulate the fracturing proce

Keywords

Joint (building)AttenuationRock mass classificationFracture (geology)Deformation (meteorology)Shear (geology)Ultimate tensile strengthComputation

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