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Seismic stability of coal tailings dams with spatially variable and liquefiable coal tailings using pore pressure plasticity models

机译:使用孔隙压力塑性模型的空间可变和液化煤尾的煤尾坝的地震稳定性

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摘要

Failure of tailings dams can result in significant spill, loss of human lives, and damages to the environment and infrastructure. Cyclic loadings such as earthquakes and blasting are among the main threats to the stability of tailings dams. Seismic stability analyses of tailings dams are further challenged by the uncertainty and variability of tailings properties. In this paper, the influence of input motion characteristics and spatial variability in coal tailings (CT) properties on the seismic stability of a typical upstream-construction CT dam is investigated. Among the input motion characteristics, peak ground acceleration (PGA), equivalent number of cycles (ENC), and frequency content are the focus of this study. First, the applicability of two advanced constitutive plasticity models, PM4Sand and PM4Silt, in simulating the cyclic behavior of CT is evaluated and a suitable model is selected. The undrained shear strength of CT is modeled as a spatially correlated Gaussian random field. Six input motions ? one blast and five earthquakes ? are selected for the dynamic analyses. The dynamic analyses are conducted in co-seismic and then post-seismic stages. The seismic stability of the CT dam with uniform properties (i.e. uniform models) is compared to the stochastic models under the selected input motions. Post-seismic analysis was found critical for the stochastic models. This study highlights the importance of stochastic modeling and the consideration of spatial variability in seismic stability analysis of CT dams.
机译:尾矿坝的失败可能导致严重泄漏,人类生命丧失以及对环境和基础设施的损害。诸如地震和爆破的循环负荷是对尾矿坝稳定性的主要威胁之一。尾矿坝的地震稳定性分析受到尾矿特性的不确定性和可变性的挑战。本文研究了对煤尾(CT)性能对典型上游建设CT大坝地震稳定性的输入运动特性及空间变异性的影响。在输入运动特性中,峰接口加速度(PGA),等同数循环(ENC),频率内容是本研究的重点。首先,评估两种先进组成型塑性模型,PM4和PM4SILT的适用性,在模拟CT的循环行为时选择合适的模型。 CT的不介绍的剪切强度被建模为空间相关的高斯随机场。六个输入运动?一个爆炸和五个地震?选择用于动态分析。动态分析是在共震和后地震阶段进行的。将CT坝与均匀性质(即均匀模型)的地震稳定性与所选输入运动下的随机模型进行比较。对于随机模型,发现后地震分析至关重要。本研究突出了随机建模的重要性及考虑CT水坝地震稳定性分析中的空间变异性。

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