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A Supporting Design Method When Longwall FaceStrides across and Passes through a Roadway

机译:一种支持的设计方法,当长壁投影跨越巷道

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In coal underground mining, situation of longwall face striding across (SAR) or passing through roadway (PTR) is very common, especially in an inclined coal seam mining. A roadway supporting design method, consisting of a model using to determine the minimal rock strata thickness and a segmental supporting scheme, is developed. In addition, to represent the mechanical behaviour of the caved material authentically, an elastic model was developed. The results showed that the elastic model has a good agreement with the caved material mechanical behaviours at a relatively lower stress condition. By using a FDEM method, a real case in Xutuan coal mine is studied. Compared with the process without backfill, the z-displacement of cross-cut roof decreased shapely after backfilling, with a maximum z-displacement, decreases from 0.76?m to 0.13?m and from 0.39?m to 0.064?m in PTR and SAR section, respectively. Therefore, the possibility of fall of ground (FOG) and crushing accidents can be reduced effectively with backfilling material of wood cribs. And the maximum subsidence (SAR section side) of face floor is 0.16?m, which is small enough to ensure normal production. The results of this study are likely to be useful as a reference for the safe and efficient mining of coal resources under similar conditions.
机译:在煤地下采矿中,长壁面跨越(SAR)或通过道路(PTR)的情况非常普遍,特别是在倾斜的煤层挖掘中。开发了一种由使用模型组成的巷道,用于确定最小岩石层厚度和分段支撑方案。另外,为了使腔材料的机械特性进行真实地,开发了弹性模型。结果表明,弹性模型与相对较低的应力条件下的塌陷材料机械行为具有良好的一致性。通过使用FDEM方法,研究了徐源煤矿的实际案例。与没有回填的过程相比,在回填后,横切屋顶的z位移匀成,最大Z偏移,从0.76μm到0.13Ω米和0.39μm到0.064?m部分分别。因此,可以有效地减少了地面(雾)和破碎事故的可能性,用木婴儿床的回填材料有效地减少。脸部地板的最大沉降(SAR段)为0.16米,这足以确保正常生产。该研究的结果可能是在类似条件下安全有效地采矿的参考。

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