Partitioning characteristics of gas channel of coal-rock mass in mining space and gas orientation me Partitioning characteristics of gas channel of coal-rock mass in mining space and gas orientation me

Partitioning characteristics of gas channel of coal-rock mass in mining space and gas orientation me

  • 期刊名字:矿业科学技术学报(英文版)
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  • 论文作者:Zhao Zhiqiang,Ma Nianjie,Jia H
  • 作者单位:School of Resource and Safety Engineering,National Engineering Research Center for Coal Gas Control
  • 更新时间:2022-09-17
  • 下载次数:
论文简介

In order to research the influence of coal-rock mass morphology of mining space on the flow law of gas, the laboratory physical model and numerical computation methods were adopted to simulate coal min-ing activities. The simulation results indicate that, after coal seam mining, the loose rock accumulation body of free caving, ordered rock arrangement body of plate damage rich in longitudinal and transverse fractures and horizontal fissure body formed by rock mass deformation imbalance are formed from bottom to top in the mining space. For these three types of accumulation bodies, there are essential differences in the accumulation state, rock size and gas breakover characteristics. According to this, the coal-rock mass in the mining space is classified into gas turbulence channel area, gas transitional flow channel area and gas seepage channel area. In the turbulence channel area, the gas is distributed trans-versely and longitudinally and gas diffuses in the form of convection with Reynolds number Re more than 100;in the transitional flow channel area, one-way or two-way gas channels are crisscross and gas is of transitional flow regime with Re between 10 and 100. In the seepage channel area, there are a few vertical gas channels with Re less than 10. In this paper, the researches on the gas orientation method in different partitions were further carried out, gas orientation methods of low-level pipe burying, middle-level interception and high-level extraction were determined and an on-site industrial test was conducted, achieving the effective diversion of gas and verifying the reasonableness of gas channel partition.

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