霍福星, 方俊, 李泉新, 唐杰. 复杂破碎地层中定向孔复合排渣钻进技术[J]. 煤矿安全, 2019, 50(7): 112-115.
    引用本文: 霍福星, 方俊, 李泉新, 唐杰. 复杂破碎地层中定向孔复合排渣钻进技术[J]. 煤矿安全, 2019, 50(7): 112-115.
    HUO Fuxing, FANG Jun, LI Quanxin, TANG Jie. Technology of Composite Slag Discharge for Directional Drilling in Complicated Broken Stratum[J]. Safety in Coal Mines, 2019, 50(7): 112-115.
    Citation: HUO Fuxing, FANG Jun, LI Quanxin, TANG Jie. Technology of Composite Slag Discharge for Directional Drilling in Complicated Broken Stratum[J]. Safety in Coal Mines, 2019, 50(7): 112-115.

    复杂破碎地层中定向孔复合排渣钻进技术

    Technology of Composite Slag Discharge for Directional Drilling in Complicated Broken Stratum

    • 摘要: 针对复杂破碎地层中定向孔孔壁易失稳坍塌、成孔率低的问题,分析了煤矿井下近水平定向孔孔壁失稳的机理,并给出采用滑动定向钻进时排渣困难、容易沉渣的原因,提出采用大流量冲洗液正循环排渣和异形钻杆回转排渣的复合排渣技术,分析了大流量冲洗液紊流排渣、钻杆回转排渣、水力正循环和异形钻杆复合排渣的机理;介绍了大流量泥浆泵车、无线随钻测量系统和异形钻杆等关键设备。在寺河煤矿进行了现场试验,在软硬复合破碎煤层区域内完成定向钻孔3个,最大孔深270 m,成孔率达到66.7%;在具有3层复杂地层的顶板中完成高位定向钻孔12个,最大孔深480 m,成孔率达到91.7%,为煤层气(瓦斯)区域递进式抽采利用和采动卸压抽采利用提供了技术保障。

       

      Abstract: Aiming at the problem that the directional borehole in complicated broken stratum is easy to instability and collapse in the coal mine, the mechanism of the wall in the nearly horizontal directional borehole are analyzed, and the reasons why it is difficult and easy to discharge slag in sliding directional drilling are given. The technology of compound slag discharge using large flow flushing fluid with positive circulation and irregular drill pipe with rotation is proposed. Meanwhile, this paper analyzes the composite slag discharge mechanism of large flow flushing fluid turbulent slag discharge, the drill pipe with rotation, the hydraulic power with positive circulation and the irregular drill pipe. The key equipment of the mud pump with large flow, the wireless drilling measurement system and the irregular drill pipe are introduced. In Sihe Coal Mine, 3 directional boreholes are completed in the soft and hard fractured coal seam area, with the maximum borehole depth is 270 m and the pore forming rate reaches 66.7%. In the roof with three layers of complex strata, 12 high position directional boreholes are completed, the maximum hole depth is 480 m, the pore forming rate reaches 91.7%. It provides technical support for gas drainage and utilizing in the progressive and coal mining distressing area.

       

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