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Research on and Design of a Self-Propelled Nozzle for the Tree-Type Drilling Technique in Underground Coal Mines

机译:煤矿井下树型钻进自攻喷嘴的研究与设计

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Due to the increasing depths of coal mines and the low permeability of some coal seams, conventional methods of gas drainage in underground mines are facing many problems. To improve gas extraction, a new technique using water jets to drill tree-type boreholes in coal seams is proposed. A self-propelled water-jet drilling nozzle was designed to drill these boreholes. The configuration of the self-propelled nozzle was optimized by conducting drilling experiments and self-propelling force measurements. Experimental results show that the optimal self-propelled nozzle has a forward orifice axial angle at 25°, a radial angle at 90°, a center distance of 1.5 mm, and backward pointing orifices with an axial angle of 25°. The self-propelling force generated by the jets of the nozzle with 30 MPa pump pressure can reach 29.8 N, enough to pull the hose and the nozzle forward without any external forces. The nozzle can drill at speeds up to 41.5 m/h with pump pressures at 30 MPa. The radial angles of the forward orifices improve the rock breaking performance of the nozzle and, with the correct angle, the rock breaking area of the orifices overlap to produce a connecting hole. The diameter of boreholes drilled by this nozzle can reach 35.2 mm. The nozzle design can be used as the basis for designing other self-propelled nozzles. The drilling experiments demonstrate the feasibility of using the tree-type drilling technique in underground mines.
机译:由于煤矿深度的增加和某些煤层的低渗透性,地下煤矿的常规瓦斯抽采方法面临许多问题。为了改善瓦斯抽采,提出了一种利用喷水器在煤层中钻树型井眼的新技术。设计了一种自推进式喷水喷嘴,用于钻探这些钻孔。通过进行钻孔实验和自推力测量,优化了自推喷嘴的配置。实验结果表明,最佳的自推进喷嘴的前孔轴向角为25°,径向角为90°,中心距离为1.5 mm,后向孔口的轴向角为25°。由喷嘴压力为30 MPa的泵的喷嘴产生的自推力可以达到29.8 N,足以向前推动软管和喷嘴而没有任何外力。该喷嘴可在30 MPa的泵压力下以高达41.5 m / h的速度钻孔。前孔的径向角度改善了喷嘴的岩石破碎性能,并且以正确的角度,孔的岩石破碎区域重叠以产生连接孔。该喷嘴钻出的钻孔直径可达到35.2 mm。喷嘴设计可以用作设计其他自推进式喷嘴的基础。钻探实验证明了在地下矿井中使用树型钻探技术的可行性。

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