Jiang Lichun, Jiao Huazhe, Xie Bo, Yang Han
School of Civil Engineering and Transportation, South China University of Technology, Guangzhou 510640, China.
Institute of Safety Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Int J Environ Res Public Health. 2022 Sep 2;19(17):10991. doi: 10.3390/ijerph191710991.
The underground sedimentary bauxite ore body in Shanxi province has a shallow burial depth; the valley terrain caused stress concentration on a pillar which affected the pillar’s safety and goaf stability. This paper proposed a pillar safety coefficient calculation method affected by the goaf structural parameters and the valley terrain, which was based on a pillar mechanics analysis under the valley terrain. The results show that the overlying valley terrain will cause stress concentration on the pillar, reducing the adequate bearing capacity and the pillar stability. The increase of the goaf span b and the height of the pillar h is extensively detrimental to pillar stability. Meanwhile, increasing the pillar burial depth would cause the pillar to weaken, but can effectively decrease the influence of the valley terrain. Furthermore, when the angle between the goaf strike and the valley strike β < 50°, β has a more significant impact on the stress concentration and safety coefficient. The stability of an underground sedimentary bauxite pillar is calculated by the method, the result complied with the actual situation.
山西省隐伏沉积型铝土矿矿体埋藏浅;山谷地形致使某矿柱应力集中,影响矿柱安全及采空区稳定性。本文基于山谷地形下矿柱力学分析,提出了一种受采空区结构参数及山谷地形影响的矿柱安全系数计算方法。结果表明,上覆山谷地形会使矿柱产生应力集中,降低矿柱的足够承载能力及稳定性。采空区跨度b和矿柱高度h的增加对矿柱稳定性极为不利。同时,增加矿柱埋藏深度会使矿柱强度减弱,但能有效降低山谷地形的影响。此外,当采空区走向与山谷走向夹角β<50°时,β对应力集中及安全系数的影响更为显著。采用该方法计算了某地下沉积型铝土矿矿柱的稳定性,结果符合实际情况。