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Scale effect of shear mechanical properties of non-penetrating horizontal rock-like joints

机译:非穿透水平岩状接头剪切力学性能的缩放效应

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From the perspective of macroscopic scale, the majority of natural rock mass should be categorized as non-penetrating jointed rock mass. The existing researches in the field of scale effect of joint properties were mainly implemented on penetrating joints, which contradicts engineering practice, and is of high possibility to make the strength estimation of large natural jointed rock mass inaccurate, leading to serious loss of life and property. In response to such case, a series of numerical calculations of direct shear test on non-penetrating horizontal rock-like joints with different scales were carried out by PFC in this paper, to investigate the scale effect of shear mechanical properties of non-penetrating horizontal rock-like joints. First, the model microparameters were calibrated by three physical experiments to guarantee the precise reproduction of the mechanical performances of target rock and joint. Next, the particle parameters (average particle size d(ave) and radius ratio mu) of model were changed, the effect of particle size on joint strength was studied by direct shear calculation, and the determining method for the values of d(ave) and mu was suggested. Then, based on two distribution forms of non-penetrating horizontal rock-like joint (type I and type II joints), the numerical shear tests were conducted on jointed rock models with different persistence rations and model scales, and the variations of shear stress displacement curve and strength characteristics were analyzed. The results indicate: The lower the persistence ration lambda of the joint, the more obvious the negative scale effect of joint shear strength. Besides, the scale effect of shear strength gradually decreases when lambda 0.5 for type I joints while lambda 0.8 for type II joints and the scale effects of joint strength parameters only emerge in the case of lambda 0.2.
机译:从宏观规模的角度来看,大部分天然岩体应分为非渗透关节岩体。关节性能范围内的现有研究主要是在穿透性关节上实施,矛盾的关节,矛盾的工程实践,并且具有高可能估算大型自然关节岩石质量不准确,导致生命和财产严重丧失。响应于这种情况,通过PFC在本文中进行了一系列关于具有不同尺度的非穿透水平岩状接头的直接剪切试验的数值计算,研究了非穿透水平的剪切力学性能的剪切力学性能的比例效应岩石状的关节。首先,通过三个物理实验校准模型微扫描仪,以保证目标岩石和关节机械性能的精确繁殖。接下来,改变模型的粒子参数(平均粒径D(AVE)和半径比mu),通过直接剪切计算研究了粒度对关节强度的影响,以及D(AVE)值的确定方法和穆是建议的。然后,基于两种不穿透水平岩状接头(I型和II型接头)的分布形式,在具有不同持久性口粮和模型尺度的关节岩体模型上进行数值剪切测试,以及剪切应力位移的变化分析了曲线和强度特征。结果表明:接头的持久性比例λ越低,关节剪切强度的负尺度效应越明显。此外,剪切强度的尺度效果当I II型接头时λ> 0.5λ> 0.8对于II型接头的λ0.8和关节强度参数的比例效应仅在λ<0.2的情况下出现。

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