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首页> 外文期刊>Journal of Petroleum Science & Engineering >Research on the working mechanism of the PDC drill bit in compound drilling
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Research on the working mechanism of the PDC drill bit in compound drilling

机译:复合钻孔中PDC钻头的工作机理研究

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摘要

A combined ground-driven and down-hole-driven motor significantly improves the penetration rate of polycrystalline diamond compact (PDC) drill bits but greatly reduces bit life. By studying the mechanical behavior of the drill string in compound drilling, a kinematics model of a PDC drill bit under compound drilling was established, and the effects of transmission ratio, cutter layout, and drill string geometry on the cutting trajectory formed by the cutters were analyzed. Furthermore, a numerical drilling simulation of the PDC drill bit was developed and enhanced to research the kinematics and cutting regularities of the PDC drill bit in compound drilling. In addition to high rotation rate, nonparallel scraping of the PDC cutters and the unbalanced contact state between the cutters and the rock are the prime reasons for improvement of the penetration rate of the PDC bit in compound drilling. An error analysis comparing simulation and experimental results was performed and the two agree to within <20%. Based on the working mechanism of the PDC drill bit in compound drilling, technical ideas and implementation methods for customized designs of PDC drill bits are discussed.
机译:组合的接地驱动和下孔驱动的电机显着提高了多晶金刚石压块(PDC)钻头的渗透率,但大大减少了钻头寿命。通过研究复合钻孔中钻柱的力学行为,建立了复合钻孔下的PDC钻头的运动学模型,传动比,刀具布局和钻柱几何形状在切割器形成的切割轨迹的影响分析。此外,开发并增强了PDC钻头的数值钻探模拟,以研究复合钻孔中PDC钻头的运动学和切割规律。除了高旋转速率,PDC切割器的非平行刮削和切割器和岩石之间的不平衡接触状态是改善复合钻孔中PDC位的渗透率的主要原因。对比较模拟和实验结果进行了误差分析,两者同意在<20%内。基于复合钻井中PDC钻头的工作机制,讨论了PDC钻头定制设计的技术思路和实现方法。

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