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首页> 外文期刊>Journal of Petroleum Science & Engineering >Similarity simulation of mining-crack-evolution characteristics of overburden strata in deep coal mining with large dip
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Similarity simulation of mining-crack-evolution characteristics of overburden strata in deep coal mining with large dip

机译:大煤矿矿床覆盖层矿床采矿裂纹演化特征的相似性仿真

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Figuring out the mining-crack-evolution characteristics of overburden strata is very important to roof control, gas drainage, disaster prevention and high efficient mining. In order to obtain the mining-crack-evolution characteristics of overburden strata in deep coal mining with large dip, in this study, No. 1221 coal mining face of Zhao coal mine is chosen as the research object to establish an in-house experiment system of similarity simulation. The experiments could measure the stress and displacement of overburden strata, which can provide useful information to investigate the mining-crack-evolution characteristics, displacement variations and movement characteristics of overburden strata associated the coal mining face. Experimental results show that with the advancing of coal mining face, the scope of gob increases gradually, and formation of the false roof of overburden strata basically reflects the evolution process of collapsing. The overburden strata weight is constantly transferred to the front and rear of coal mining face, which forms the supporting pressures on both sides of coal pillars, and causes the gangue's collapsing in gob. The large dip of coal seam results in pressure disequilibrium in stress-increasing zone. Thus, the stress on the underside of gob becomes larger and larger, while the stress on upper side of gob decreases. The strata separation appears in the overburden strata of roof. Pressure-relief zone is mainly concentrated in the side of outlet roadway. Along the inclination direction of coal mining face, the crack development and strata separation are obvious, which create the passages for gas flow and migration. The similarity simulation results provide fundamental information for better understanding those mining-crack-evolution characteristics of overburden strata, which has become more and more important to control the roadway stability in coal mining and optimize the layout of gas drainage boreholes for improving mining safety.
机译:弄清楚覆盖层的采矿裂缝演化特性对于屋顶控制,瓦斯排水,防灾和高效采矿非常重要。为了获得大煤矿覆盖层覆盖层的采矿 - 裂缝演化特征,在这项研究中,赵煤矿的第1221号煤炭煤炭被选为建立内部实验系统的研究对象相似性模拟。实验可以测量覆盖层层的应力和位移,这可以提供有用的信息,以研究煤矿面的覆盖层的采矿裂缝演化特性,位移变化和运动特性。实验结果表明,随着煤矿面的推进,GOB的范围逐渐增加,覆盖层的假屋顶的形成基本上反映了坍塌的进化过程。覆盖层的分层重量不断转移到煤矿面的前后,形成煤柱两侧的支撑压力,并导致甘蓝在甘虎中坍塌。煤层的大倾斜导致压力增加的压力不平衡。因此,GOB下侧面的应力变大,较大,而GOB的上侧的应力降低。地层分离出现在屋顶的覆盖层中。压力消除区主要集中在出口道路的一侧。沿着煤矿面的倾斜方向,裂纹开发和地层分离是显而易见的,它创造了气体流动和迁移的通道。相似性仿真结果提供了基本信息,以便更好地了解覆盖层的矿山裂缝演化特征,这对于控制煤矿中的道路稳定性并优化燃气排水钻孔的布局来改善采矿安全性,这变得越来越重要。

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