Liu Jianzhong, Yang Han, Zhang Dongming, Wang Yun, Xiao Weijing, Ye Chen, Zheng Binbin, Yang Yushun
State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, People's Republic of China.
School of Resources and Safety Engineering, Chongqing University, Chongqing 400044, People's Republic of China.
R Soc Open Sci. 2021 Sep 15;8(9):210669. doi: 10.1098/rsos.210669. eCollection 2021 Sep.
Tailings dam is a man-made hazard with high potential energy; dam failure would cause great losses to human lives and properties. However, the limitations of conventional reinforcement methods like geosynthetic make it easy to slide along the weak structural plane. In this paper, we innovatively added basalt fibre (BF) with different lengths () and contents () into tailings to study its mechanical and permeation characteristics. The results indicate that BF can improve the shear strength (), cohesion () and compression index ( ) of tailings, but it has little effect on internal friction angle (). When is constant, , and are positively correlated with . One notable phenomenon is that and do not constantly increase with when is constant, but obtain the maximum under the optimal length of 6 mm. Moreover, when > 0.6%, permeability coefficient () is greater than that of the original tailings and the sensitivity of , , , , to fibre content is greater than that of length. The research results facilitate the understanding of BF reinforced tailings, and could serve as references for improving the safety of tailings dam and other artificial soil slopes or soil structures.
尾矿坝是一种具有高势能的人为灾害;坝体失稳会给生命财产造成巨大损失。然而,诸如土工合成材料等传统加固方法存在局限性,使得尾矿坝容易沿软弱结构面滑动。在本文中,我们创新性地向尾矿中添加不同长度()和含量()的玄武岩纤维(BF),以研究其力学和渗透特性。结果表明,玄武岩纤维可以提高尾矿的抗剪强度()、黏聚力()和压缩指数(),但对其内摩擦角()影响较小。当 为常数时, 、 和 与 呈正相关。一个值得注意的现象是,当 为常数时, 和 并非随 不断增加,而是在最佳长度6mm时达到最大值。此外,当 > 0.6%时,渗透系数()大于原状尾矿, 、 、 、 、 对纤维含量的敏感度大于对长度的敏感度。研究结果有助于了解玄武岩纤维加固尾矿的情况,并可为提高尾矿坝及其他人工土坡或土体结构的安全性提供参考。