论文标题

一个简化的程序,用于评估上游饲养的尾矿存储设施中静态液化触发的触发

A simplified procedure to numerically evaluate triggering of static liquefaction in upstream-raised tailings storage facilities

论文作者

Sottile, M. G., Cueto, I. A., Sfriso, A. O.

论文摘要

在上游饲养的尾矿存储设施(TSF)最近发生故障之后,采矿业对静态液化评估的兴趣加剧了静态液化。评估TSF的全球稳定性的标准实践需要考虑到峰值和残留的未排水剪切强度的极限平衡分析;因此,忽略了驱动软化过程所需的工作输入,从而导致易感尾矿的逐渐失败。本文提出了一种简化的程序,通过使用有限元元素模型,采用众所周知的具有小型晶体刚度(HSS)的著名硬化土壤模型来评估上游提高TSF的静态液化触发。提出了一种校准方法来克服未在临界状态框架中实现的模型限制,重点是控制剪切诱导的塑料体积菌株速率的刚度参数。真正的TSF在Plaxis 2D中进行了建模,以评估其由于在基础上的横向扩散而导致其液化性的脆弱性。结果表明,脚趾附近的次要运动将材料引起过压力的状态,从而导致对结构波峰的进行性失效。

The interest of the mining industry on the assessment of tailings static liquefaction has exacerbated after recent failures of upstream-raised tailings storage facilities (TSF). Standard practices to evaluate global stability of TSFs entail the use of limit equilibrium analyses considering peak and residual undrained shear strengths; thus, neglecting the work input required to drive the softening process that leads to progressive failure of susceptible tailings. This paper presents a simplified procedure to evaluate the static liquefaction triggering of upstream-raised TSFs by means of finite element models employing the well-known Hardening Soil model with small-strain stiffness (HSS). A calibration methodology is proposed to overcome the model limitation of not being implemented in a critical state framework, focusing on the stiffness parameters that control the rate of shear-induced plastic volumetric strains. A real TSF is modelled in Plaxis 2D to evaluate its vulnerability to liquefy due to an undrained lateral spreading at the foundation. Results show that minor movements near the toe induce the material into a strain-softening regime that leads to a progressive failure towards the structure crest.

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