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Numerical Simulation of the Shear Behavior of Rock Joints Filled with Unsaturated Soil

机译:非饱和土填充岩石节理剪切特性的数值模拟

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Weak infilled discontinuities commonly exist in rock masses, in which the infill degree of saturation largely influences the overall joint shear behavior and ground stability. However, so far, research on the shear of infilled joints at unsaturated conditions is rare, especially those performed in numerical simulation. To the authors' knowledge, no attempts have been made to investigate the shear-induced variations in unsaturated soil parameters, which are vital for proposing the infilled-joint constitutive models. For the first time, a series of constant water content direct shear tests on the unsaturated infilled-joint soil were conducted using the numerical software Fast Lagrangian Analysis of Continua (FLAC)/Two-Phase Flow. Intrinsic soil-water retention and permeability models were updated in the FISH subroutine to consider porosity. Results highlight the disadvantage of the built-in models in FLAC. Initial infill saturation and other factors, including physical shear rate, joint roughness, infill thickness, and normal stress, all showed effects on the joint shear strength consistent with literature reports. Shear-induced variations in the mean values of Bishop effective stress and permeability of the infill layer were emphasized.
机译:岩体中普遍存在弱填充不连续性,其中饱和填充度在很大程度上影响整体节理的剪切特性和地面稳定性。但是,到目前为止,对填充接缝在不饱和条件下的剪切的研究很少,特别是在数值模拟中。据作者所知,还没有尝试研究非饱和土参数中的剪力引起的变化,这对于提出填充节理本构模型至关重要。第一次,使用数值软件快速连续拉格朗日分析法(FLAC)/两相流,对非饱和填充节理土壤进行了一系列恒定含水量的直接剪切试验。在FISH子程序中更新了固有的土壤保水率和渗透率模型,以考虑孔隙度。结果突出显示了FLAC中内置模型的缺点。初始填充物饱和度和其他因素,包括物理剪切速率,接缝粗糙度,填充物厚度和法向应力,均显示出对接缝剪切强度的影响,与文献报道一致。强调了剪切引起的Bishop有效应力平均值和填充层渗透率的变化。

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