唐胜利, 方 金, 李泉新, 刘建林, 赵江鹏. 近水平孔PDC反循环取心钻头孔底岩心卡堵机理研究[J]. 煤矿安全, 2020, 51(9): 108-113.
    引用本文: 唐胜利, 方 金, 李泉新, 刘建林, 赵江鹏. 近水平孔PDC反循环取心钻头孔底岩心卡堵机理研究[J]. 煤矿安全, 2020, 51(9): 108-113.
    TANG Shengli, FANG Jin, LI Quanxin, LIU Jianlin, ZHAO Jiangpeng. Study on Mechanism of Rock Core Plugging at Bottom of PDC Reverse Circulation Coring Bit for Nearly Horizontal Hole[J]. Safety in Coal Mines, 2020, 51(9): 108-113.
    Citation: TANG Shengli, FANG Jin, LI Quanxin, LIU Jianlin, ZHAO Jiangpeng. Study on Mechanism of Rock Core Plugging at Bottom of PDC Reverse Circulation Coring Bit for Nearly Horizontal Hole[J]. Safety in Coal Mines, 2020, 51(9): 108-113.

    近水平孔PDC反循环取心钻头孔底岩心卡堵机理研究

    Study on Mechanism of Rock Core Plugging at Bottom of PDC Reverse Circulation Coring Bit for Nearly Horizontal Hole

    • 摘要: 为了揭示近水平状态下水力反循环取心钻进过程中岩心在钻头体内卡堵的机理,采用数值模拟软件对PDC反循环取心钻头局部流场进行了数值模拟,分析了PDC取心钻头不同数量底喷孔和内喷孔组合对流量分配的影响规律,由现场试验进行了验证。结果表明:当钻头体底喷孔数量一定时,钻头体中心通道的返出流量随着内喷孔数量的增加而增大;当钻头体内喷孔数量一定时,钻头体中心通道的返出流量随着底喷孔数量的减少而增大,通过不同模型数值模拟结果的对比,确定底喷孔数量为2个,内喷孔数量为6个时,中心通道具有较合理的返出流量和流出速度,理论上能够最大程度地保证岩心的顺利运移。

       

      Abstract: To reveal the mechanism of rock core plugging in drill bit during hydraulic reverse circulation coring drilling under nearly horizontal condition, the numerical simulation software is used to carry out the numerical simulation for the local flow field of PDC reverse coring bit, then the different number of bottom orifice for PDC coring bit and the effects of internal orifice combination on flow distribution are analyzed, which is verified by the field tests. The results show that when the number of bottom orifices of the bit body is constant, the return flow of the center channel of the bit body increases with the increase of the number of internal orifices; when the number of holes in the bit body is constant, the return flow of the center channel of the bit body increases with the decrease of the number of bottom orifices. Through the comparison of the numerical simulation results for different models, it is determined that when the number of bottom orifices is two and the number of internal orifices is six, the center channel has the reasonable return flow and flow velocity, which can guarantee the smooth migration of rock core to the greatest extent theoretically.

       

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