苏二换, 陈涛, 钮景付, 刘宇. 不均匀上覆荷载对露天矿采空区沉陷的影响规律研究[J]. 煤矿安全, 2021, 52(8): 226-232.
    引用本文: 苏二换, 陈涛, 钮景付, 刘宇. 不均匀上覆荷载对露天矿采空区沉陷的影响规律研究[J]. 煤矿安全, 2021, 52(8): 226-232.
    SU Erhuan, CHEN Tao, NIU Jingfu, LIU Yu. Study on influence law of non-uniform overburden load on goaf subsidence in open-pit mine[J]. Safety in Coal Mines, 2021, 52(8): 226-232.
    Citation: SU Erhuan, CHEN Tao, NIU Jingfu, LIU Yu. Study on influence law of non-uniform overburden load on goaf subsidence in open-pit mine[J]. Safety in Coal Mines, 2021, 52(8): 226-232.

    不均匀上覆荷载对露天矿采空区沉陷的影响规律研究

    Study on influence law of non-uniform overburden load on goaf subsidence in open-pit mine

    • 摘要: 为了研究不均匀上覆载荷对露天矿采空区沉陷的影响规律,基于开采沉陷理论与技术,建立采空区沉陷模型,通过Rhino-FLAC3D建模进行数值模拟,分析了排土场堆载过程中产生的不均匀载荷对采空区、不同外排土场形状对采空区的地表沉陷过程中的应力分布形态及变形规律,总结分析了露天矿排土场下覆采空区沉陷的影响规律。研究结果表明:随着排土场连续堆载高度加大,采空区上覆不均匀载荷随之增大,地表下沉位移量不断增大,竖直方向的压应力随埋深增加到最大值后递减为零后变为拉剪应力;采空区水平距离排土场300 m以上,排土场的堆载对采空区变形影响较小;采空区最顶部未堆载排弃物,地表沉降量约为采空区顶板累计沉降量的2倍;方形排土场下的地表下沉位移量比圆形排土场的大,2种排土场结构下的采空区长度上的下沉位移曲线呈V型对称,应力位移曲线呈M型,圆形排土场对下伏岩层中采空区变形影响更小,更有利于露天矿排土场的稳定性。

       

      Abstract: In order to study the influence law of non-uniform overburden load on the goaf subsidence of open-pit mine, based on mining subsidence theory and technology, a subsidence model of goaf was established. Through modeling by Rhino-FLAC3D, we analyzed the stress distribution pattern and deformation rule of the surface subsidence of the mined-out area caused by the non-uniform load in the process of dump loading and different outer dump shapes, summarized and analyzed the influence law of the subsidence of the overlying goaf under the dump of open-pit mine. The results show that with the increase of the continuous load height of the dump, the non-uniform load on the goaf increases, the displacement of surface subsidence increases, and the vertical compressive stress decreases to zero with the increase of the buried depth and then becomes the tension-shear stress; when the horizontal distance of the goaf is more than 300 m from the dump, the overburden of the dump has little influence on the deformation of the goaf; the top of the goaf is not loaded to discharge the abandoned materials, and the surface settlement is about two times of the accumulated settlement of the roof of the goaf; the surface subsidence displacement of the square dump is larger than that of the circular dump. The subsidence displacement curve of the length of the goaf under the two kinds of dump structures is V-shaped symmetrical, and the stress displacement curve is M-shaped. The circular dump has less influence on the deformation of the goaf in the underlying rock strata, which is more conducive to the stability of the open-pit dump.

       

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