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An Innovative Longwall Mining Technology in Tangshan Coal Mine, China

机译:唐山煤矿的创新长壁开采技术

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In mining of inclined coal seams in Tangshan coal mine of Kailuan group, gateways on either end of a panel were both typically located along the floor and a gateway pillar between adjoining panels was left unmined between adjacent panels to ensure stability, thus forming a planar mining system. According to the practice, however, it turned out that this conventional mining system has long-standing problems, such as face end support problems, coal bumps, sliding of mining equipment downhill, spontaneous combustions, support problems in development entries, etc. In view of this situation and based on the No. Y294 panel, this paper analyzes an innovative mining technology in which the gateways on either end of a panel are located at different heights within the coal seam. For the adjacent panel, the gate development may be superposed on the development entry of the previous panel or may be offset with respect to it. Field data shows that the split-level layout of the longwall panel plays an effective role in control of overall stability of mining equipment in inclined coal seams. Physical modeling demonstrates that the new technology has many advantages in ground control. Under the condition without a pillar, development entry adjacent to the new panel is located in the de-stressed zone and stress concentration is significantly reduced with associated reduction in coal bumps, bursts and support problems which means less support and maintenance requirement and cost. Compared with the conventional rectangular pillar, the gateway pillar width in this new technology is effectively reduced when pillars have to be left unmined. Roof strata behavior and features are analyzed. Corresponding operations in the field are introduced in detail.
机译:在开lu集团唐山煤矿倾斜煤层的开采中,面板两端的出入口通常都沿地面布置,相邻面板之间的出入支柱在相邻面板之间不留空以确保稳定性,从而形成了平面采矿系统。但是,根据实践,事实证明,这种常规的采矿系统存在长期存在的问题,例如工作面端部支撑问题,煤块颠簸,采矿设备的下坡滑动,自燃,开发入口的支撑问题等。基于这种情况,本文基于Y294号面板,分析了一种创新的采矿技术,其中面板两端的通道位于煤层内的不同高度。对于相邻的面板,浇口展开可以叠加在前一个面板的展开入口上,也可以相对于其偏移。现场数据表明,长壁板的分层布置在控制倾斜煤层中采矿设备的整体稳定性方面发挥了有效作用。物理建模表明,该新技术在地面控制方面具有许多优势。在没有支柱的情况下,新面板附近的开发入口位于卸压区,应力集中得以显着降低,从而减少了煤爆,爆裂和支撑问题,这意味着较少的支撑和维护需求以及成本。与传统的矩形立柱相比,此新技术中的门廊立柱宽度有效地减小了,而不必放开立柱。分析了屋顶地层的行为和特征。详细介绍了本领域的相应操作。

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