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Application of modelling to improve ventilation and gas management in a single entry longwall panel

机译:建模在一个入口长墙板中改善通风气化管理的应用

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Ventilation modelling is used to evaluate ventilation system performance. This paper describes modelling to assess potential changes to a single entry longwall ventilation circuit to improve ventilation and gas management. The longwall panel is extracting a 215 metre face in a 1.5 metre coal seam at a depth of 900 to 1000 metres below surface. The 1.5 metre B seam is located approximately 25 metres below the main 3.0 metre A seam and the gas content of both coal seams is approximately 20 to 25 m~3/t. The B seam is extracted prior to the A seam and the mine relies on fracturing of the overlying strata to induce gas emission from the A seam to reduce the gas content prior to mining. Longwall operations in the B seam are constrained by limited ventilation and high gas emissions. Due in part to statutory limits on gas concentration and air velocity, the average longwall production rate is approximately 7001 per day.Gate roads in the B seam are single entry, developed using road headers and supported with steel arches. Additional timber cog support is installed to reduce roadway closure from abutment loading. Due to the slow advance of gate road development, mine management were reluctant to consider significant mine design changes, such as two heading gate roads; therefore, the investigation focused on determining the extent to which ventilation and gas emission impacted on longwall production performance, while recommending short-term, low-cost actions to improve ventilation and gas management to support increased longwall production.
机译:通风建模用于评估通风系统性能。本文介绍了建模,以评估单个入口长墙通风电路的潜在变化,以改善通风和气体管理。长墙板在1.5米煤层中提取215米面,深度为900至1000米以下。 1.5米B接缝位于大约25米以下的主要3.0米,煤层的气体含量约为20至25米〜3 / t。在接缝之前提取B接缝,并且矿物依赖于覆盖层的压裂以诱导来自A接缝的气体排放以降低挖掘前的气体含量。 B接缝中的长壁操作受到有限通风和高气体排放的限制。由于气体浓度和空气速度的法定限制,平均长壁生产率每天约为7001. B接缝中的道路是单一进入,使用道路标头开发并用钢拱门支撑。安装了额外的木材嵌齿齿轮支架,以减少邻接载荷的巷道闭合。由于门道路发展缓慢,矿山管理不愿意考虑重大的矿井设计变化,如两个标题门道路;因此,调查致力于确定通风和气体排放对长壁生产性能影响的程度,同时推荐短期,低成本行动,提高通风和天然气管理,以支持增加的长墙生产。

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